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Fege Magnetic Phase Diagram A–d) Magnetic Configurations I

Fege magnetic (pdf) precursor phenomena at the magnetic ordering of the cubic Magnetic and transport properties of mn 4 fege 3 : a magnetization as a

Cubic, hexagonal and tetragonal FeGe x phases ( x = 1, 1.5, 2): Raman

Cubic, hexagonal and tetragonal FeGe x phases ( x = 1, 1.5, 2): Raman

A–d) magnetic configurations in fege (a,c) and mn1.4pt0.9pd0.1sn (b,d Physics:helimagnetism Complete phase diagram of fege slab in h -out-of-plane configuration

(a) lorentz tem images of a thin fege plate with a thickness of t ≈ 160

Temperature dependencies of the magnetic susceptibility of fege 2Phase corresponding Figure s3. temperature dependence of magnetic bragg peaks in fege underMagnetic phase diagram for fe2p obtained from specific heat (filled.

(a) crystal structure of the b35-type fege as reported at roomFege magnetic ordering phenomena cubic precursor Magnetic phase diagram of fege single crystal as a function of dcThe temperature dependence of magnetization [] for fege under.

a–d) Magnetic configurations in FeGe (a,c) and Mn1.4Pt0.9Pd0.1Sn (b,d

Film thickness dependence of the magnetic phase diagram of fege. the

Complete phase diagram of fege slab in h -out-of-plane configurationMagnetic phase diagram of fege single crystal as a function of dc Magnetic fe2p obtained specificH||–t plots of fege nanostructures. the critical fields for the.

Magnetic phase diagram of fege single crystal as a function of dcCubic, hexagonal and tetragonal fege x phases ( x = 1, 1.5, 2): raman Magnetic phase diagram of hexagonal fegeSpin, charge, and lattice structures of fege. a, crystal and magnetic.

Film thickness dependence of the magnetic phase diagram of FeGe. The

Magnetisation ferromagnetic

The phase diagram of the magnetisation behavior of ferromagneticFilm thickness dependence of the magnetic phase diagram of fege. the Structural and magnetic study of ~200-nm-thick fege films. (a(color online) magnetic phase diagram of fege based on integrated sans.

(pdf) magnetic interactions and possible structural distortion inMagnetic phase diagram of the fege tetrahedral particle system each Nm fege nanodisk temperatures lower skyrmion(color online) the magnetic phase diagram of the magnetic states.

Temperature dependencies of the magnetic susceptibility of FeGe 2

(a) fege bulk phase diagram from ac susceptibility measurements showing

H-t phase diagram of 310-nm fege nanodisk. at temperatures lower thanMagnetic phase diagram of the fege tetrahedral particle system each Magnetic property analysis and magnetic phase determination of fe 0.95Magnetic phase diagram of fege single crystal as a function of dc.

Fege magnetic cubic crystal topological spin dynamicsField and temperature dependence of magnetic phase diagram a, magnetic Crystal and magnetic structure, phase diagram, sample characterization(a) magnetization versus magnetic field for a 35 nm fege film. (b.

(PDF) Precursor Phenomena at the Magnetic Ordering of the Cubic Film thickness dependence of the magnetic phase diagram of FeGe. The

Film thickness dependence of the magnetic phase diagram of FeGe. The

The temperature dependence of magnetization [] for FeGe under

The temperature dependence of magnetization [] for FeGe under

(a) Magnetization versus magnetic field for a 35 nm FeGe film. (b

(a) Magnetization versus magnetic field for a 35 nm FeGe film. (b

The phase diagram of the magnetisation behavior of ferromagnetic

The phase diagram of the magnetisation behavior of ferromagnetic

H-T phase diagram of 310-nm FeGe nanodisk. At temperatures lower than

H-T phase diagram of 310-nm FeGe nanodisk. At temperatures lower than

H||–T plots of FeGe nanostructures. The critical fields for the

H||–T plots of FeGe nanostructures. The critical fields for the

Figure S3. Temperature dependence of magnetic Bragg peaks in FeGe under

Figure S3. Temperature dependence of magnetic Bragg peaks in FeGe under

Cubic, hexagonal and tetragonal FeGe x phases ( x = 1, 1.5, 2): Raman

Cubic, hexagonal and tetragonal FeGe x phases ( x = 1, 1.5, 2): Raman

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