Phase transitions induced by standard and predetermined measurements in transmon arrays
Gonzalo Mart\'in-V\'azquez, Taneli Tolppanen, Matti Silveri

TL;DR
This paper investigates measurement-induced phase transitions in transmon arrays modeled by an attractive Bose-Hubbard model, demonstrating how feedback and simple observables can reveal entanglement phases without extensive classical post-processing.
Contribution
It introduces a novel feedback measurement approach in transmon arrays that allows phase transition detection through simple observables, reducing experimental complexity.
Findings
Transmon arrays exhibit a phase transition in entanglement entropy.
Feedback operations enable phase inference from local measurements.
Simple observables can reveal entanglement phases without trajectory post-selection.
Abstract
The confluence of unitary dynamics and non-unitary measurements gives rise to intriguing and relevant phenomena, generally referred to as measurement-induced phase transitions. These transitions have been observed in quantum systems composed of trapped ions and superconducting quantum devices. However, their experimental realization demands substantial resources, primarily owing to the classical tracking of measurement outcomes, known as post-selection of trajectories. In this work, we first describe the statistical properties of an interacting transmon array which is repeatedly measured, and predict the behavior of relevant quantities in the area-law phase using a combination of the replica method and non-Hermitian perturbation theory. We show numerically that a transmon array, modeled by an attractive Bose-Hubbard model, in which local measurements of the number of bosons are…
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Taxonomy
TopicsAntenna Design and Optimization · Antenna Design and Analysis · Structural Analysis and Optimization
