Spatiotemporally Resolved Orbital Hall Effect in a Topological Semimetal
  • Park, Byung Cheol
  • Ha, Taewoo
  • Lee, Hojun
  • Sim, Kyung Ik
  • Baek, Insu
  • 외 4명
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초록

Orbital angular momentum (OAM), once considered a marginal property in solids, has recently gained importance in various physical phenomena. Although optical probes couple to OAM directly, comparable low-energy electrodynamic methods are still in the early stages of development. To exploit the potential of OAM for information science and technology, angular momentum-resolved transport methods must be established. Here, a principle is presented for an angular momentum-resolved method to observe orbital Hall effect (OHE) in real space. The orbital conduction in the topological semimetal T d-WTe2 is measured using contact-free polarimetric terahertz probe, showing that two distinct regions of +/- Lz with a diffusion length of approximate to 130 mu m due to the extremely low scattering rate of Weyl fermions form in real space. The observed orbital conduction can be explained by OHE, according to theoretical calculations. By altering the polarization and intensity of the terahertz electric field input, it is also demonstrated that this orbital conduction can be engineered. Using a spatiotemporal low-energy electrodynamic probe, the work reveals direct evidence of coherent OHE in an inversion-broken topological semimetal with strong spin-orbit coupling-an experimentally elusive regime until now.

키워드

orbital Hall effectTHz tip-based microscopytopological semimetalQUANTUMTRANSITIONMAGNETISMFARADAY
제목
Spatiotemporally Resolved Orbital Hall Effect in a Topological Semimetal
저자
Park, Byung CheolHa, TaewooLee, HojunSim, Kyung IkBaek, InsuYun, Seok JoonLee, KyujoonLee, Hyun-WooLee, Young Hee
DOI
10.1002/adma.202503808
발행일
2025-10
유형
Article; Early Access
저널명
Advanced Materials
38
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