Boaz Taitler

ORCID: 0009-0006-7484-4478
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About
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Research Areas
  • Semiconductor Quantum Structures and Devices
  • Quantum and electron transport phenomena
  • Quantum optics and atomic interactions
  • Quantum Information and Cryptography
  • Photonic Crystals and Applications
  • Neural Networks and Reservoir Computing

Technion – Israel Institute of Technology
2024-2025

Cluster states are key resources for measurement-based quantum information processing. Photonic cluster and graph states, in particular, play indispensable roles network metrology. We demonstrate a semiconductor dot based device which the confined hole spin acts as needle knitting machine producing continuously deterministically at sub-Gigahertz repetition rate single indistinguishable photons all polarization entangled to each other one dimensional state. By projecting two nonadjacent onto...

10.1088/1361-6633/ad4c93 preprint EN arXiv (Cornell University) 2024-03-06

Abstract Cluster states are key resources for measurement-based quantum information processing. Photonic cluster and graph states, in particular, play indispensable roles network metrology. We demonstrate a semiconductor dot based device which the confined hole spin acts as needle knitting machine producing continuously deterministically at sub-Gigahertz repetition rate single indistinguishable photons all polarization entangled to each other one dimensional state. By projecting two...

10.1088/1361-6633/ad4c93 article EN cc-by Reports on Progress in Physics 2024-07-01

We present magneto-optical studies of a self-assembled semiconductor quantum dot, concentrating specifically on the case in which dot is doubly positively charged, studying this way confined hole - exchange interaction. A simple harmonic potential model, we extend to capture influence an externally applied magnetic field Faraday configuration fully describe observed polarization sensitive magneto-photoluminscence spectra. deduce effective composition from its measured electronic g-factor....

10.48550/arxiv.2301.04583 preprint EN other-oa arXiv (Cornell University) 2023-01-01
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