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Rogue quantum gravitational waves

In this paper, we propose the existence and discuss the properties of rogue quantum gravitational waves. More specifically, we numerically solve the Schrödinger-Newton system of equations using a spectral scheme with a $4^{th}$ order Runge-Kutta time integrator and show that noise either imposed on...

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Detalles Bibliográficos
Autores principales: Bayindir, Cihan, Ozaydin, Fatih, Altintas, Azmi Ali, Arık, Metin
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2687432
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author Bayindir, Cihan
Ozaydin, Fatih
Altintas, Azmi Ali
Arık, Metin
author_facet Bayindir, Cihan
Ozaydin, Fatih
Altintas, Azmi Ali
Arık, Metin
author_sort Bayindir, Cihan
collection CERN
description In this paper, we propose the existence and discuss the properties of rogue quantum gravitational waves. More specifically, we numerically solve the Schrödinger-Newton system of equations using a spectral scheme with a $4^{th}$ order Runge-Kutta time integrator and show that noise either imposed on wave function $\Psi$, or the gravitational field $\Phi$, triggers the modulation instability which turns the monochromatic wave fields into chaotic ones exhibiting high and unexpected waves. Such waves can be named as rogue quantum gravitational waves. We discuss the characteristics and probabilities of occurrences of such rogue waves in the frame of the Schrödinger-Netwon equations. We suggest alternative methods for studying rogue quantum gravitational waves and rogue gravitational waves.
id cern-2687432
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26874322023-01-27T04:17:36Zhttp://cds.cern.ch/record/2687432engBayindir, CihanOzaydin, FatihAltintas, Azmi AliArık, MetinRogue quantum gravitational wavesphysics.gen-phOther Fields of Physicsnlin.PSNonlinear Systemsquant-phGeneral Theoretical PhysicsIn this paper, we propose the existence and discuss the properties of rogue quantum gravitational waves. More specifically, we numerically solve the Schrödinger-Newton system of equations using a spectral scheme with a $4^{th}$ order Runge-Kutta time integrator and show that noise either imposed on wave function $\Psi$, or the gravitational field $\Phi$, triggers the modulation instability which turns the monochromatic wave fields into chaotic ones exhibiting high and unexpected waves. Such waves can be named as rogue quantum gravitational waves. We discuss the characteristics and probabilities of occurrences of such rogue waves in the frame of the Schrödinger-Netwon equations. We suggest alternative methods for studying rogue quantum gravitational waves and rogue gravitational waves.arXiv:1908.02601oai:cds.cern.ch:26874322019-08-02
spellingShingle physics.gen-ph
Other Fields of Physics
nlin.PS
Nonlinear Systems
quant-ph
General Theoretical Physics
Bayindir, Cihan
Ozaydin, Fatih
Altintas, Azmi Ali
Arık, Metin
Rogue quantum gravitational waves
title Rogue quantum gravitational waves
title_full Rogue quantum gravitational waves
title_fullStr Rogue quantum gravitational waves
title_full_unstemmed Rogue quantum gravitational waves
title_short Rogue quantum gravitational waves
title_sort rogue quantum gravitational waves
topic physics.gen-ph
Other Fields of Physics
nlin.PS
Nonlinear Systems
quant-ph
General Theoretical Physics
url http://cds.cern.ch/record/2687432
work_keys_str_mv AT bayindircihan roguequantumgravitationalwaves
AT ozaydinfatih roguequantumgravitationalwaves
AT altintasazmiali roguequantumgravitationalwaves
AT arıkmetin roguequantumgravitationalwaves