Quantum Sensing with Cavity Optomechanical Array for Gravimetry: Optimization of Entanglement Transfer

‎Improvement of precision in gravimetry is an important problem in detecting the gravitational waves. In The first demonstration of using quantum optomechanical cavity in gravimetry has recently been reported. This experiment has been done by employing a cooled levitated nano-sphere as a mechanical...

Full description

Saved in:
Bibliographic Details
Main Authors: Zeynab Faroughi, Ali Ahanj
Format: Article
Language:English
Published: Damghan university 2020-04-01
Series:Iranian Journal of Astronomy and Astrophysics
Subjects:
Online Access:https://ijaa.du.ac.ir/article_179_cf30d20fdc898e6d8ae366536b1fb020.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1841545158695321600
author Zeynab Faroughi
Ali Ahanj
author_facet Zeynab Faroughi
Ali Ahanj
author_sort Zeynab Faroughi
collection DOAJ
description ‎Improvement of precision in gravimetry is an important problem in detecting the gravitational waves. In The first demonstration of using quantum optomechanical cavity in gravimetry has recently been reported. This experiment has been done by employing a cooled levitated nano-sphere as a mechanical oscillator in its ground state coupled to a cavity electrodynamics. Following this experiment, in a recent proposal, a quantum optomechanical system has been used for ‎measuring‎ of gravitational acceleration. A generic setup for gravimetry purposes, containing two couples optomechanical cavities, where mirrors play the role of oscillating parts. We study such quantum mechanical system, by investigation the dynamics of entanglement between different parts of two coupled cavity optomechanical cells. ‎For such setup, ‎optimal conditions for predesignated entanglement behavior‎, ‎based on some important parameters of the system‎, ‎like photon-photon and photon-phonon couplings‎, ‎electromagnetic field strength and mechanical mode of moving mirrors are analyzed numerically‎. We show that there exist two different behaviors for entanglement according to selected values for the system parameters. ‎‎‎
format Article
id doaj-art-d6fdda7c622e42fbba9c3bac9de3ee76
institution Kabale University
issn 2322-4924
2383-403X
language English
publishDate 2020-04-01
publisher Damghan university
record_format Article
series Iranian Journal of Astronomy and Astrophysics
spelling doaj-art-d6fdda7c622e42fbba9c3bac9de3ee762025-01-12T10:10:45ZengDamghan universityIranian Journal of Astronomy and Astrophysics2322-49242383-403X2020-04-017111010.22128/ijaa.2020.377.1074179Quantum Sensing with Cavity Optomechanical Array for Gravimetry: Optimization of Entanglement TransferZeynab Faroughi0Ali Ahanj1Faculty of Physics, Shahid Bahonar University of Kerman, Kerman, IranDepartment of Physics, Khayyam University‎Improvement of precision in gravimetry is an important problem in detecting the gravitational waves. In The first demonstration of using quantum optomechanical cavity in gravimetry has recently been reported. This experiment has been done by employing a cooled levitated nano-sphere as a mechanical oscillator in its ground state coupled to a cavity electrodynamics. Following this experiment, in a recent proposal, a quantum optomechanical system has been used for ‎measuring‎ of gravitational acceleration. A generic setup for gravimetry purposes, containing two couples optomechanical cavities, where mirrors play the role of oscillating parts. We study such quantum mechanical system, by investigation the dynamics of entanglement between different parts of two coupled cavity optomechanical cells. ‎For such setup, ‎optimal conditions for predesignated entanglement behavior‎, ‎based on some important parameters of the system‎, ‎like photon-photon and photon-phonon couplings‎, ‎electromagnetic field strength and mechanical mode of moving mirrors are analyzed numerically‎. We show that there exist two different behaviors for entanglement according to selected values for the system parameters. ‎‎‎https://ijaa.du.ac.ir/article_179_cf30d20fdc898e6d8ae366536b1fb020.pdfoptomechanical cavitylinear entropymandel’s parameter
spellingShingle Zeynab Faroughi
Ali Ahanj
Quantum Sensing with Cavity Optomechanical Array for Gravimetry: Optimization of Entanglement Transfer
Iranian Journal of Astronomy and Astrophysics
optomechanical cavity
linear entropy
mandel’s parameter
title Quantum Sensing with Cavity Optomechanical Array for Gravimetry: Optimization of Entanglement Transfer
title_full Quantum Sensing with Cavity Optomechanical Array for Gravimetry: Optimization of Entanglement Transfer
title_fullStr Quantum Sensing with Cavity Optomechanical Array for Gravimetry: Optimization of Entanglement Transfer
title_full_unstemmed Quantum Sensing with Cavity Optomechanical Array for Gravimetry: Optimization of Entanglement Transfer
title_short Quantum Sensing with Cavity Optomechanical Array for Gravimetry: Optimization of Entanglement Transfer
title_sort quantum sensing with cavity optomechanical array for gravimetry optimization of entanglement transfer
topic optomechanical cavity
linear entropy
mandel’s parameter
url https://ijaa.du.ac.ir/article_179_cf30d20fdc898e6d8ae366536b1fb020.pdf
work_keys_str_mv AT zeynabfaroughi quantumsensingwithcavityoptomechanicalarrayforgravimetryoptimizationofentanglementtransfer
AT aliahanj quantumsensingwithcavityoptomechanicalarrayforgravimetryoptimizationofentanglementtransfer