output
20212023
most citedA study on rare-earth Laves phases for magnetocaloric liquefaction of hydrogen

78 citations

9 papers

cond-mat.mtrl-sci2023★ 51 cited

Designing magnetocaloric materials for hydrogen liquefaction with light rare-earth Laves phases

Wei Liu, Tino Gottschall, Franziska Scheibel +6

Magnetocaloric hydrogen liquefaction could be a "game-changer" for liquid hydrogen industry. Although heavy rare-earth-based magnetocaloric materials show strong magnetocaloric eff…

cond-mat.mtrl-sci2022

Au4Mn, a localized ferromagnet with strong spin-orbit coupling, long-range ferromagnetic exchange and high Curie temperature

Yangkun He, Zsolt Gercsi, Rui Zhang +8

Metallic Mn-based alloys with a nearest-neighbor Mn-Mn distance greater than 0.4 nm exhibit large, well-localized magnetic moments. Here we investigate the magnetism of tetragonal…

cond-mat.mes-hall2022★ 2 cited

Effects of the rf current and bias field direction on the transition from linear to non-linear gyrotropic dynamics in magnetic vortex structures

Lakshmi Ramasubramanian, Vadym Iurchuk, Serhii Sorokin +2

We present a frequency-domain study of the dynamic behavior of a magnetic vortex core within a single Permalloy disk by means of electrical detection and micromagnetic simulations.…

cond-mat.mtrl-sci2022★ 13 cited

Deformed spin- square lattice in antiferromagnetic NaZnVOPO(HPO)

S. Guchhait, D. V. Ambika, Qing-Ping Ding +4

We report the structural and magnetic properties of a new spin- antiferromagnet NaZnVOPO(HPO) studied via x-ray diffraction, magnetic susceptibility, high-field ma…

cond-mat.mtrl-sci2022★ 78 cited

A study on rare-earth Laves phases for magnetocaloric liquefaction of hydrogen

Wei Liu, Eduard Bykov, Sergey Taskaev +10

We are witnessing a great transition towards a society powered by renewable energies to meet the ever-stringent climate target. Hydrogen, as an energy carrier, will play a key role…

cond-mat.mtrl-sci2022★ 5 cited

Pressure induced isostructural phase transition in biskyrmion host hexagonal MnNiGa

Anupam K. Singh, Parul Devi, Ajit K. Jena +5

Magnetic skyrmions are vortex-like spin textures, which can be manipulated by external stress or pressure via magnetoelastic effects. Here, we present the observation of isostructu…