Spin amplification in realistic systems

Fuente: arXiv
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Hauptverfasser: Iakoupov, Ivan, Bastidas, Victor M., Matsuzaki, Yuichiro, Saito, Shiro, Munro, William J.
Format: Preprint
Veröffentlicht: 2024
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author Iakoupov, Ivan
Bastidas, Victor M.
Matsuzaki, Yuichiro
Saito, Shiro
Munro, William J.
author_facet Iakoupov, Ivan
Bastidas, Victor M.
Matsuzaki, Yuichiro
Saito, Shiro
Munro, William J.
contents Spin amplification is the process that ideally increases the number of excited spins when one of them is excited initially. We show that by applying optimal control techniques to design classical drive pulse shapes, spin amplification can be achieved in a previously unexplored fast regime, with amplification times comparable to the intrinsic interaction timescale. This is an order of magnitude faster than the previous protocols and makes spin amplification possible even with significant decoherence and inhomogeneity in the spin system. The initial spin excitation can be delocalized over the entire ensemble, which is a more typical situation when a photon is collectively absorbed by the spins. We focus on the superconducting persistent-current artificial atoms and the Rydberg atoms as spins.
format Preprint
id arxiv_https___arxiv_org_abs_2409_11956
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Spin amplification in realistic systems
Iakoupov, Ivan
Bastidas, Victor M.
Matsuzaki, Yuichiro
Saito, Shiro
Munro, William J.
Quantum Physics
Spin amplification is the process that ideally increases the number of excited spins when one of them is excited initially. We show that by applying optimal control techniques to design classical drive pulse shapes, spin amplification can be achieved in a previously unexplored fast regime, with amplification times comparable to the intrinsic interaction timescale. This is an order of magnitude faster than the previous protocols and makes spin amplification possible even with significant decoherence and inhomogeneity in the spin system. The initial spin excitation can be delocalized over the entire ensemble, which is a more typical situation when a photon is collectively absorbed by the spins. We focus on the superconducting persistent-current artificial atoms and the Rydberg atoms as spins.
title Spin amplification in realistic systems
topic Quantum Physics
url https://arxiv.org/abs/2409.11956