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ppms dynacool  (Quantum Design GmbH)


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    Structured Review

    Quantum Design GmbH ppms dynacool
    Ppms Dynacool, supplied by Quantum Design GmbH, used in various techniques. Bioz Stars score: 99/100, based on 32558 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/properties/PPMS+DynaCool/custom%40ppms-dynacool%4042363826
    Average 99 stars, based on 32558 article reviews
    ppms dynacool - by Bioz Stars, 2026-10
    99/100 stars

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    Related Articles

    Ferromagnetism:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Thin Films:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    AFM Microscopy:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Phase Transitions:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Imaging:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Topological Protection:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Skyrmions:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Microscopy:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Magnetism:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Ferrimagnetism:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Magnetic Hysteresis:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    MOKE:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Magnetoresistance:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    2D Materials:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    MFM:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Magnetic Random Access Memory:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    First Order Reversal Curve (FORC) Measurements:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Magnetic Anisotropy:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Hall Effect Measurements:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Tunneling Magnetoresistance (TMR):

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Nanotechnology:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    AC Susceptibility:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Capsules:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Surface Science:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Magnetic Nanoparticles:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Raman Spectroscopy:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Thin Films & Coatings:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Construct:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Vibrating Sample Magnetometry (VSM):

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Pharmaceuticals:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    DC Magnetometry:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Nanomaterials:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Surface Topography:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Permanent Magnets:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Superconductivity:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Resistivity Measurements:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Condensed Matter Physics:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Electric Transport:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Topological Insulators:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Quantum Materials:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Carrier Concentration:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Nanowires:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Current-voltage (IV) Measurements:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Photoluminescence:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Differential Resistance (dV/dI) Measurements:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Mobility Measurements:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Materials Science:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Qubit:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Gas Chromatography:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Chromatography:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Concentration Assay:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Photovoltaics:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Surface Roughness:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Semiconductors:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Seebeck Measurements:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Metal-Insulator Transitions:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Thermoelectrics:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona

    Topological Semimetals:

    Article Title: Programmable Topological Magnetic Textures in Above-Room-Temperature 2D Ferromagnet Fe 3 GaTe 2 .
    Article Snippet: ice resistance, w is the sample width, and d is the sample thickness, both determined by an optical microscope. The magnetic properties were measured by a Physical Properties Measurement System (PPMS, Quantum Design with a 9 T magnetic field), MOKE, and magnetic force microscope (MFM). MFM measurements were conducted in Lift Mode in air at room temperature using a Bruker Icon system for conventiona



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