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  5. Development of a unique full-scale real-fire facade testing facility at IIT Gandhinagar
 
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Development of a unique full-scale real-fire facade testing facility at IIT Gandhinagar

Source
Current Science
Date Issued
2018-11-01
Author(s)
Srivastava, Gaurav
Ghoroi, Chinmay
Gandhi, Pravinray D.
Jagdish, V.
Karthikeyan, G.
Chakravarthy, Aravind
Nakrani, Dharmit
Volume
vol. 115
Issue
no. 9
Abstract
We study cooperative phenomena in the fluctuation-induced forces between a surface and a system of neutral two-level quantum emitters prepared in a coherent collective state, showing that the total Casimir-Polder force on the emitters can be modified via their mutual correlations. Particularly, we find that a one-dimensional chain of emitters prepared in a super- or subradiant state experiences an enhanced or suppressed collective vacuum-induced force, respectively. The collective nature of dispersion forces can be understood as resulting from the interference between the different processes contributing to the surface-modified resonant dipole-dipole interaction. Such cooperative fluctuation forces depend singularly on the surface response at the resonance frequency of the emitters, thus being easily maneuverable. Our results demonstrate the potential of collective phenomena as a new tool to selectively tailor vacuum forces.
Sherpa Url
https://v2.sherpa.ac.uk/id/publication/23138
URI
https://wwwops.currentscience.ac.in/Volumes/115/09/1782.pdf
https://d8.irins.org/handle/IITG2025/29669
Subjects
Façade testing facility
leap frog effect
real-fire behaviour
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