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We study the prospect of the equivalence principle at the quantum regime by investigating the transition probabilities of a two-level atomic detector in different scenarios. In particular, two specific set-ups are considered. ($i$)…

General Relativity and Quantum Cosmology · Physics 2025-02-21 Pradeep Kumar Kumawat , Subhajit Barman , Bibhas Ranjan Majhi

In this work we discuss the process of measurements by a detector in an uniformly accelerated rectilinear motion, interacting linearly with a massive scalar field. The detector model for field quanta is a point-like system with a ground…

High Energy Physics - Theory · Physics 2021-05-05 M. S. Soares , N. F. Svaiter , C. A. D. Zarro , G. Menezes

In this work, we study the response of a detector confined in a harmonic oscillator potential when interacting with classical and quantum gravitational fields. The detector response is characterized through transition probabilities between…

General Relativity and Quantum Cosmology · Physics 2026-05-20 Anom Trenggana , Freddy P. Zen , Seramika Ariwahjoedi

We investigate the radiative processes involving two entangled Unruh-DeWitt detectors that are moving on circular trajectories in $(2+1)$-dimensional Minkowski spacetime. We assume that the detectors are coupled to a massless, quantum…

General Relativity and Quantum Cosmology · Physics 2024-05-28 Subhajit Barman , Bibhas Ranjan Majhi , L. Sriramkumar

A communication protocol with non-zero quantum capacity is found when the two communicating parts are particle detector models in (3+1)-dimensional spacetime. In particular, as detectors, we consider two harmonic oscillators interacting…

General Relativity and Quantum Cosmology · Physics 2024-07-25 Alessio Lapponi , Jorma Louko , Stefano Mancini

We study, using Rindler coordinates, the quantization of a charged scalar field interacting with a constant, external, electric field. First we establish the expression of the Schwinger vacuum decay rate, using the operator formalism. Then…

General Relativity and Quantum Cosmology · Physics 2009-10-31 Cl. Gabriel , Ph. Spindel

We study successive Rindler-like transformations in Minkowski spacetime and the corresponding sequence of vacuum states perceived by observers restricted to respective wedges. Extending the standard Rindler construction to an $n$-fold…

General Relativity and Quantum Cosmology · Physics 2025-10-24 Nitesh K. Dubey , Jaswanth Uppalapati , Sanved Kolekar

We consider a particle detector model on 1+1-dimensional Minkowski space-time that is accelerated by a constant external acceleration a. The detector is coupled to a massless scalar test field. Due to the Unruh effect, this detector becomes…

High Energy Physics - Theory · Physics 2013-05-14 Franz Thoma

We investigate a two-level Unruh-DeWitt detector coupled to a massless scalar field or its proper time derivative in $(1+1)$-dimensional Minkowski spacetime, in a quantum state whose correlation structure across the Rindler horizon mimics…

High Energy Physics - Theory · Physics 2015-08-11 Jorma Louko

We investigate the fate of initial entanglement between two accelerated detectors with respect to an observer attached to one of the detectors. Both $(1+1)$ and $(1+3)$ spacetime dimensions are being considered here, with the detectors…

High Energy Physics - Theory · Physics 2022-05-25 Pratyusha Chowdhury , Bibhas Ranjan Majhi

We investigate how nontrivial topology affects the entanglement dynamics between a detector and a quantum field and between two detectors mediated by a quantum field. Nontrivial topology refers to both that of the base space and that of the…

General Relativity and Quantum Cosmology · Physics 2016-03-17 Shih-Yuin Lin , Chung-Hsien Chou , Bei-Lok Hu

The response of the Unruh-DeWitt type monopole detectors which were coupled to the quantum field only for a finite proper time interval is studied for inertial and accelerated trajectories, in the Minkowski vacuum in (3+1) dimensions. Such…

General Relativity and Quantum Cosmology · Physics 2009-10-22 L. Sriramkumar , T. Padmanabhan

The transition probability in first-order perturbation theory for an Unruh-DeWitt detector coupled to a massless scalar field in Minkowski space is calculated. It has been shown recently that the conventional $i\epsilon$ regularisation…

General Relativity and Quantum Cosmology · Physics 2008-11-26 Alejandro Satz

When a quantum particle traverses a rectangular potential created by a quantum field both photon exchange and entanglement between particle and field take place. We present analytic results for the transition amplitudes of any possible…

Quantum Physics · Physics 2015-06-11 Georg Sulyok , Katharina Durstberger-Rennhofer , Johann Summhammer

Unruh-DeWitt particle detector models are studied in a variety of time-dependent and time-independent settings. We work within the framework of first-order perturbation theory and couple the detector to a massless scalar field. The…

General Relativity and Quantum Cosmology · Physics 2013-10-16 Lee Hodgkinson

We explore the quantum coherence between a pair of entangled Unruh-DeWitt detectors, interacting with a quantum field, using a nonperturbative approach in a (3+1)-dimensional Minkowski spacetime with instantaneous switching…

Quantum Physics · Physics 2025-06-18 Shu-Min Wu , Yu-Xuan Wang , Wentao Liu

In pursuit of a full-fledged theory of quantum gravity, operational approaches offer insights into quantum-gravitational effects produced by quantum superposition of different spacetimes not diffeomorphic to one another. Recent work applies…

General Relativity and Quantum Cosmology · Physics 2025-06-17 Lakshay Goel , Everett A. Patterson , María Rosa Preciado-Rivas , Mahdi Torabian , Robert B. Mann , Niayesh Afshordi

In this paper, we investigate the quantum correlations and coherence of two accelerating Unruh-deWitt detectors coupled to a scalar field in 3 + 1 Minkowski space-time. We show that the entanglement is completely destroyed in the limit of…

Quantum Physics · Physics 2022-11-29 S. Bhuvaneswari , R. Muthuganesan , R. Radha

Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from two quantum superpositions of coherent states, the so-called "Schroedinger's cat" state. Such entanglement can further be distributed over…

We report a quantum interference and imaging experiment which quantitatively demonstrates that Einstein-Podolsky-Rosen (EPR) type entangled two-photon states exhibit both momentum-momentum and position-position correlations, stronger than…

Quantum Physics · Physics 2009-11-10 Milena D'Angelo , Yoon-Ho Kim , Sergei P. Kulik , Yanhua Shih
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