Gravitational decoherence by the apparatus in the quantum-gravity-induced entanglement of masses

被引:4
|
作者
Gunnink, Fabian [1 ]
Mazumdar, Anupam [1 ]
Schut, Martine [1 ]
Toros, Marko [2 ]
机构
[1] Univ Groningen, Van Swinderen Inst Particle Phys & Grav, NL-9747 AG Groningen, Netherlands
[2] Univ Glasgow, Sch Phys & Astron, Glasgow G12 8QQ, Scotland
关键词
QGEM; quantum gravity; decoherence; gravitational decoherence; entanglement; quantum harmonic oscillator;
D O I
10.1088/1361-6382/ad0496
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
One of the outstanding questions in modern physics is how to test whether gravity is classical or quantum in a laboratory. Recently there has been a proposal to test the quantum nature of gravity by creating quantum superpositions of two nearby neutral masses, close enough that the quantum nature of gravity can entangle the two quantum systems, but still sufficiently far away that all other known Standard Model interactions remain negligible. However, preparing superposition states of a neutral mass (the light system) requires the vicinity of laboratory apparatus (the heavy system). We will suppose that such a heavy system can be modelled as another quantum system; since gravity is universal, the lighter system can get entangled with the heavier system, providing an inherent source of gravitational decoherence. In this paper, we will consider a toy model composed of two light and two heavy quantum oscillators prepared in the motional ground state, forming pairs of probe-detector systems, and study under what conditions the entanglement between two light systems evades the decoherence induced by the heavy systems. We conclude by estimating the decoherence in the proposed experiment for testing the quantum nature of gravity.
引用
收藏
页数:23
相关论文
共 50 条
  • [1] Qudits for witnessing quantum-gravity-induced entanglement of masses under decoherence
    Tilly, Jules
    Marshman, Ryan J.
    Mazumdar, Anupam
    Bose, Sougato
    [J]. PHYSICAL REVIEW A, 2021, 104 (05)
  • [2] Improving resilience of quantum-gravity-induced entanglement of masses to decoherence using three superpositions
    Schut, Martine
    Tilly, Jules
    Marshman, Ryan J.
    Bose, Sougato
    Mazumdar, Anupam
    [J]. PHYSICAL REVIEW A, 2022, 105 (03)
  • [3] Quantum-Gravity-induced decoherence and CPT violation
    Mavromatos, NE
    [J]. BEYOND THE DESERT 1997: ACCELERATOR AND NON-ACCELERATOR APPROACHES, 1998, : 873 - 883
  • [4] Relaxation of experimental parameters in a quantum-gravity-induced entanglement of masses protocol using electromagnetic screening
    Schut, Martine
    Grinin, Alexey
    Dana, Andrew
    Bose, Sougato
    Geraci, Andrew
    Mazumdar, Anupam
    [J]. PHYSICAL REVIEW RESEARCH, 2023, 5 (04):
  • [5] Quantum decoherence induced by gravitational fluctuations in the measurement apparatus
    Unturbe, J
    [J]. NEW DEVELOPMENTS ON FUNDAMENTAL PROBLEMS IN QUANTUM PHYSICS, 1997, 81 : 421 - 424
  • [6] Quantum gravity induced entanglement of masses with extra dimensions
    Shuai Feng
    Bao-Min Gu
    Fu-Wen Shu
    [J]. The European Physical Journal C, 84
  • [7] Quantum gravity induced entanglement of masses with extra dimensions
    Feng, Shuai
    Gu, Bao-Min
    Shu, Fu-Wen
    [J]. EUROPEAN PHYSICAL JOURNAL C, 2024, 84 (01):
  • [8] Discriminating quantum gravity models by gravitational decoherence
    Al-Nasrallah, Eissa
    Das, Saurya
    Illuminati, Fabrizio
    Petruzziello, Luciano
    Vagenas, Elias C.
    [J]. NUCLEAR PHYSICS B, 2023, 992
  • [9] Quantum-gravity-induced dual lensing and IceCube neutrinos
    Amelino-Camelia, Giovanni
    Barcaroli, Leonardo
    D'Amico, Giacomo
    Loret, Niccolo
    Rosati, Giacomo
    [J]. INTERNATIONAL JOURNAL OF MODERN PHYSICS D, 2017, 26 (08):
  • [10] Quantum entanglement of masses with nonlocal gravitational interaction
    Vinckers, Ulrich K. Beckering
    de la Cruz-Dombriz, Alvaro
    Mazumdar, Anupam
    [J]. PHYSICAL REVIEW D, 2023, 107 (12)