English

Quantum simulation of Unruh-DeWitt detectors with nonlinear optics

Quantum Physics 2020-09-17 v3 General Relativity and Quantum Cosmology

Abstract

We propose a method for simulating an Unruh-DeWitt detector, coupled to a 1+1-dimensional massless scalar field, with a suitably-engineered χ(2)\chi^{(2)} nonlinear interaction. In this simulation, the parameter playing the role of the detector acceleration is played by the relative inverse-group-velocity gradient inside the nonlinear material. We identify experimental parameters that tune the detector energy gap, acceleration, and switching function. This system can simulate time-dependent acceleration, time-dependent detector energy gaps, and non-vacuum initial detector-field states. Furthermore, for very short materials, the system can simulate the weak anti-Unruh effect, in which the response of the detector decreases with acceleration. While some Unruh-related phenomena have been investigated in nonlinear optics, this is the first proposal for simulating an Unruh-DeWitt detector in these systems.

Keywords

Cite

@article{arxiv.2001.04987,
  title  = {Quantum simulation of Unruh-DeWitt detectors with nonlinear optics},
  author = {Eugene Adjei and Kevin J. Resch and Agata M. Brańczyk},
  journal= {arXiv preprint arXiv:2001.04987},
  year   = {2020}
}

Comments

5 pages main text (10 pages total), 2 figures

R2 v1 2026-06-23T13:11:15.027Z