4.8 Article

Nanoscale Optical Addressing of Valley Pseudospins through Transverse Optical Spin

期刊

NANO LETTERS
卷 20, 期 6, 页码 4410-4415

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.0c01173

关键词

TMDC materials; WS2; valleytronics; transverse optical spin; spin-momentum locking; ZnO nanowires

资金

  1. ERC [340438-CONSTANS]
  2. National Research Foundation o f Korea [NRF-2019R1A2C2003313, NRF 2019R1A4A1028121]
  3. Marie Sklodowska-Curie Action BISTRO-LIGHT [748950]
  4. Marie Curie Actions (MSCA) [748950] Funding Source: Marie Curie Actions (MSCA)

向作者/读者索取更多资源

Valley pseudospin has emerged as a good quantum number to encode information, analogous to spin in spintronics. Two-dimensional transition metal dichalcogenides (2D TMDCs) recently attracted enormous attention for their easy access to the valley pseudospin through valley-dependent optical transitions. Different ways have been reported to read out the valley pseudospin state. For practical applications, on-chip access to and manipulation of valley pseudospins is paramount, not only to read out but especially to initiate the valley pseudospin state. Here, we experimentally demonstrate the selective on-chip, optical near-field initiation of valley pseudospins at room temperature. We exploit a nanowire optical waveguide, such that the local transverse optical spin of its guided modes selectively excites a specific valley pseudospin. Furthermore, spin-momentum locking of the transverse optical spin enables us to flip valley pseudospins with the opposite propagation direction. Thus, we open up ways to realize integrated hybrid opto-valleytronic devices.

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