Single-Atom Amplification Assisted by Multiple Sideband Interference in 1D Waveguide QED Systems

Fuente: arXiv
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Main Authors: Lin, Kuan-Ting, Hsu, Ting, Aziz, Fahad, Lin, Yu-Chen, Wen, Ping-Yi, Hoi, Io-Chun, Lin, Guin-Dar
Format: Preprint
Published: 2023
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author Lin, Kuan-Ting
Hsu, Ting
Aziz, Fahad
Lin, Yu-Chen
Wen, Ping-Yi
Hoi, Io-Chun
Lin, Guin-Dar
author_facet Lin, Kuan-Ting
Hsu, Ting
Aziz, Fahad
Lin, Yu-Chen
Wen, Ping-Yi
Hoi, Io-Chun
Lin, Guin-Dar
contents This study conducts a theoretical investigation into the signal amplification arising from multiple Rabi sideband coherence within a one-dimensional waveguide quantum electrodynamics system. We utilize a semi-infinite waveguide to drive an anharmonic multi-level transmon with a strong coherent microwave field, examining the scattering behavior by introducing a probe signal. Our findings reveal signal amplification under specific resonant conditions, presenting spectra that reveal finer details than previously documented in the literature. To elucidate the mechanisms behind this amplification, we develop a model that explicitly accounts for multiple dressed sidebands in the presence of a strong driving field. From this model, we derive the reflection amplitude of the probe signal. Notably, our results indicate that amplification can occur due to either population inversion or, in some instances, through the constructive interference of multiple sidebands even in the absence of population inversion. Additionally, we explore how qubit dephasing impacts the amplification process.
format Preprint
id arxiv_https___arxiv_org_abs_2307_11174
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Single-Atom Amplification Assisted by Multiple Sideband Interference in 1D Waveguide QED Systems
Lin, Kuan-Ting
Hsu, Ting
Aziz, Fahad
Lin, Yu-Chen
Wen, Ping-Yi
Hoi, Io-Chun
Lin, Guin-Dar
Quantum Physics
This study conducts a theoretical investigation into the signal amplification arising from multiple Rabi sideband coherence within a one-dimensional waveguide quantum electrodynamics system. We utilize a semi-infinite waveguide to drive an anharmonic multi-level transmon with a strong coherent microwave field, examining the scattering behavior by introducing a probe signal. Our findings reveal signal amplification under specific resonant conditions, presenting spectra that reveal finer details than previously documented in the literature. To elucidate the mechanisms behind this amplification, we develop a model that explicitly accounts for multiple dressed sidebands in the presence of a strong driving field. From this model, we derive the reflection amplitude of the probe signal. Notably, our results indicate that amplification can occur due to either population inversion or, in some instances, through the constructive interference of multiple sidebands even in the absence of population inversion. Additionally, we explore how qubit dephasing impacts the amplification process.
title Single-Atom Amplification Assisted by Multiple Sideband Interference in 1D Waveguide QED Systems
topic Quantum Physics
url https://arxiv.org/abs/2307.11174