Dispersive Non-reciprocity between a Qubit and a Cavity
- URL: http://arxiv.org/abs/2307.05298v3
- Date: Sat, 9 Mar 2024 04:07:52 GMT
- Title: Dispersive Non-reciprocity between a Qubit and a Cavity
- Authors: Ying-Ying Wang, Yu-Xin Wang, Sean van Geldern, Thomas Connolly,
Aashish A. Clerk, Chen Wang
- Abstract summary: We present an experimental study of a non-reciprocal dispersive-type interaction between a transmon qubit and a superconducting cavity.
We show that the qubit-cavity dynamics is well-described in a wide parameter regime by a simple non-reciprocal master-equation model.
- Score: 24.911532779175175
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: The dispersive interaction between a qubit and a cavity is ubiquitous in
circuit and cavity quantum electrodynamics. It describes the frequency shift of
one quantum mode in response to excitations in the other, and in closed systems
is necessarily bidirectional, i.e.~reciprocal. Here, we present an experimental
study of a non-reciprocal dispersive-type interaction between a transmon qubit
and a superconducting cavity, arising from a common coupling to dissipative
intermediary modes with broken time reversal symmetry. We characterize the
qubit-cavity dynamics, including asymmetric frequency pulls and photon
shot-noise dephasing, under varying degrees of non-reciprocity by tuning the
magnetic field bias of a ferrite component in situ. Furthermore, we show that
the qubit-cavity dynamics is well-described in a wide parameter regime by a
simple non-reciprocal master-equation model, which provides a compact
description of the non-reciprocal interaction without requiring a full
understanding of the complex dynamics of the intermediary system. Our result
provides an example of quantum non-reciprocal phenomena beyond the typical
paradigms of non-Hermitian Hamiltonians and cascaded systems.
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