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Perturbative Diagonalization for Time-Dependent Strong Interactions

delete2022-08-03
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OA
AI
Z
Zhihao Xiao *
E
Emery Doucet
T
Taewan Noh
L
Leonardo Ranzani
R
R. W. Simmonds
L
Luke C. G. Govia
A
Archana Kamal
DOI:10.1103/PhysRevApplied.18.024009delete
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Abstract

Abstract

En 中文
We present a systematic method to implement a perturbative Hamiltonian diagonalization based on the time-dependent Schrieffer-Wolff transformation. Applying our method to strong parametric interactions we show how, even in the dispersive regime, full Rabi model physics is essential to describe the dressed spectrum. Our results unveil several qualitatively different results, including realization of large energylevel shifts, tunable in magnitude and sign with the frequency and amplitude of the pump mediating the parametric interaction. Crucially, Bloch-Siegert shifts, typically thought to be important only in the ultrastrong or deep-strong coupling regimes, can be rendered large even for weak dispersive interactions to realize points of exact cancelation of dressed shifts (???blind spots???) at specific pump frequencies. The framework developed here highlights the rich physics accessible with time-dependent interactions and serves to significantly expand the functionalities for control and readout of strongly interacting quantum systems.

Journal

Physical Review Applied cover
Physical Review Applied
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4.4
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university of massachusetts system
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University of Massachusetts Lowell
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national institute of standards & technology (nist) - usa
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