On-Chip Laser-Driven Free-Electron Spin Polarizer
On-Chip Laser-Driven Free-Electron Spin Polarizer
Spin-polarized electron beam sources enable studies of spin-dependent electric and magnetic effects at the nanoscale. We propose a method of creating spin-polarized electrons on an integrated photonics chip by laser driven nanophotonic fields. A two-stage interaction separated by a free space drift length is proposed, where the first stage and drift length introduces spin-dependent characteristics into the probability distribution of the electron wavefunction. The second stage uses an adjusted optical near-field to rotate the spin states utilizing the spin-dependent wavepacket distribution to produce electrons with high ensemble average spin expectation values. This platform provides an integrated and compact method to generate spin-polarized electrons, implementable with millimeter scale chips and table-top lasers.
Clarisse Woodahl、Melanie Murillo、Charles Roques-Carmes、Aviv Karnieli、David A. B. Miller、Olav Solgaard
光电子技术微电子学、集成电路
Clarisse Woodahl,Melanie Murillo,Charles Roques-Carmes,Aviv Karnieli,David A. B. Miller,Olav Solgaard.On-Chip Laser-Driven Free-Electron Spin Polarizer[EB/OL].(2025-07-23)[2025-08-10].https://arxiv.org/abs/2507.17993.点此复制
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