7 - 11 April 2024
Strasbourg, France
Conference 12990 > Paper 12990-16
Paper 12990-16

Quantum theory of wave scattering from time interfaces

8 April 2024 • 15:15 - 15:30 CEST | Etoile C, Niveau/Level 1

Abstract

In this presentation, we shed light on electromagnetic time interfaces using the principles of quantum optics. We begin by explaining the transformation of bosonic mode operators in response to a temporal discontinuity in the macroscopic parameters. Accordingly, our discussion extends to the general analysis of photon statistics and the degree of second-order coherence of the generated forward and backward modes. Focusing on input number states, we meticulously detail the quantum states produced after the time interface, elucidating the associated probability distributions. By virtue of this study, we specifically highlight the controllable nature of photon statistics of the output forward mode for particular input states. We show that this capability, in general, is not present for the backward mode generated through the time interface. Also, we reveal that photon-pair generation is a fundamental inherent feature of the time interface. By unveiling all these insights, we aim to pave the way for exploring photonic time crystals within the domain of quantum optics.

Presenter

Mohammad Sajjad Mirmoosa
Univ. of Eastern Finland (Finland)
Dr. Mohammad Sajjad Mirmoosa received his DSc. degree in Electrical Engineering from Aalto University in 2017. He has been a Postdoctoral Researcher with Aalto University (Finland) and EPFL (Switzerland). Currently, he is working at the University of Eastern Finland as a researcher. His main research interests include Electromagnetics and Quantum Optics.
Presenter/Author
Mohammad Sajjad Mirmoosa
Univ. of Eastern Finland (Finland)
Author
Univ. of Eastern Finland (Finland)