BibTex format
@article{Chevalier:2022:10.1116/5.0079675,
author = {Chevalier, H and Kwon, H and Khosla, KE and Pikovski, I and Kim, MS},
doi = {10.1116/5.0079675},
journal = {AVS Quantum Science},
pages = {1--10},
title = {Many-body probes for quantum features of spacetime},
url = {http://dx.doi.org/10.1116/5.0079675},
volume = {4},
year = {2022}
}
RIS format (EndNote, RefMan)
TY - JOUR
AB - Many theories of quantum gravity can be understood as imposing a minimum length scale the signatures of which can potentially be seen in precise table top experiments. In this work, we inspect the capacity for correlated many-body systems to probe non-classicalities of spacetime through modifications of the commutation relations. We find an analytic derivation of the dynamics for a single mode light field interacting with a single mechanical oscillator and with coupled oscillators to first order corrections to the commutation relations. Our solution is valid for any coupling function as we work out the full Magnus expansion. We numerically show that it is possible to have superquadratic scaling of a nonstandard phase term, arising from the modification to the commutation relations, with coupled mechanical oscillators.
AU - Chevalier,H
AU - Kwon,H
AU - Khosla,KE
AU - Pikovski,I
AU - Kim,MS
DO - 10.1116/5.0079675
EP - 10
PY - 2022///
SN - 2639-0213
SP - 1
TI - Many-body probes for quantum features of spacetime
T2 - AVS Quantum Science
UR - http://dx.doi.org/10.1116/5.0079675
UR - https://avs.scitation.org/doi/10.1116/5.0079675
UR - http://hdl.handle.net/10044/1/98540
VL - 4
ER -