Estudo dos pares de Cooper fotônicos e sua relação com os formalismos da teoria BCS da supercondutividade e da teoria da superfluidez

The correlated Stokes-anti-Stokes (SaS) Raman scattering occurs with the creation of a Stokes (S) and anti-Stokes (aS) photon pair where the phonon created by the S process is annihilated by the aS process. This process is said to be mediated by a virtual vibrational mode where the photon-photon int...

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Bibliographic Details
Author: Julie Priscilla Souza dos Santos
Format: master thesis
Status:Published version
Publication Date:2022
Country:Brasil
Institution:Universidade Federal de Minas Gerais (UFMG)
Repository:Repositório Institucional da UFMG
Language:Portuguese
OAI Identifier:oai:repositorio.ufmg.br:1843/47429
Online Access:http://hdl.handle.net/1843/47429
https://orcid.org/0000-0002-0080-5744
Access Level:Open access
Keyword:Espalhamento Raman
Fótons stokes-anti-stokes correlacionados
Pares de fótons
Supercondutividade
Superfluidez
Fótons
Description
Summary:The correlated Stokes-anti-Stokes (SaS) Raman scattering occurs with the creation of a Stokes (S) and anti-Stokes (aS) photon pair where the phonon created by the S process is annihilated by the aS process. This process is said to be mediated by a virtual vibrational mode where the photon-photon interaction can be considered similar to the electron-electron interaction in the BSC supercondutivity theory, also called Cooper Pairs. In this work, we report a study and propose a theorical modeling for SaS correlated photon pairs, using a common approach from condensed matter physics. The proposal starts from conventional eletronic superdutivity, BCS theory, in which the operations are performed with commutation relations for fermions. Then, the superfluidity theory is presented as a base theory for the study of the analogy between fotonics pairs SaS and eletronics Cooper pais from BCS theory. In sequence, a theoretical review about the fotonic pairs SaS and a review about Raman process are made, followed by some experimental results who corroborate the study of fotonic pairs SaS in analogy with eletronic Cooper pairs. Finally, the construction based on photonic Cooper pairs is proposed, with operations that respect the anticommutation relations usual for bosons, where the Bugoliubov approximation can be considered, defining some properties of the system.