QuantumComputingInfo
Researchvia arXiv quant-ph

Can a quantum circuit detect the Unruh effect?

arXiv:2607.24836v1 Announce Type: new Abstract: The Unruh effect predicts that an accelerating observer perceives the Minkowski vacuum as a thermal bath, yet di...

Quantum Editorial Team
July 29, 2026
1 min read
This article has been aggregated from arXiv quant-ph. You can read the original publication at https://arxiv.org/abs/2607.24836.
AI Insights

Get a 3-second summary of this article

Can a quantum circuit detect the Unruh effect?

Source: Originally published on arXiv quant-ph on July 29, 2026.

arXiv:2607.24836v1 Announce Type: new Abstract: The Unruh effect predicts that an accelerating observer perceives the Minkowski vacuum as a thermal bath, yet direct detection remains experimentally inaccessible. Its timelike counterpart, arising from the entanglement of massless fields between the future and past light cones, offers a more feasible route but requires a detector whose transition frequency follows a specific conformal-time scaling. We propose and analyze a practical implementation of such a detector using superconducting fluxonium circuits, which naturally provide two quasi-degenerate ground states and a tunable excited state, forming an effective $\Lambda$-system. By modulating the excited-state transition frequency in Minkowski time, the detector accumulates a geometric ph...


To read the full article, visit the original source page:

Read the full article on arXiv quant-ph →

#research

Comments are not configured yet. Set up Giscus environment variables to enable discussions.

Required: NEXT_PUBLIC_GISCUS_REPO, NEXT_PUBLIC_GISCUS_REPO_ID, NEXT_PUBLIC_GISCUS_CATEGORY, NEXT_PUBLIC_GISCUS_CATEGORY_ID

Related Articles

HX
Research

A Quantum Reservoir for Neurodynamical Forecasting

arXiv:2608.00139v1 Announce Type: new Abstract: Forecasting neural activity from short recordings remains a fundamental challenge. Reservoir computing may offer...

Aug 4, 20261 min
via arXiv quant-ph
HX
Research

Canonical quantization of the Pais-Uhlenbeck oscillator with a higher-derivative perturbation: a covariant phase space approach

arXiv:2608.00108v1 Announce Type: new Abstract: In this paper, we apply the covariant phase space formalism to the perturbative canonical quantization of the Pa...

Aug 4, 20261 min
via arXiv quant-ph
Research

Exact minimum measurement dependence for faithful local deterministic models of multipartite GHZ-Mermin correlations

arXiv:2608.00124v1 Announce Type: new Abstract: Bell derivations rest on locality, determinism, and measurement independence. Hall [Phys. Rev. Lett. 105, 250404...

Aug 4, 20261 min
via arXiv quant-ph