A Space-Time Knife-Edge In Epsilon-Near-Zero Films for Ultrafast Pulse Characterization

Fuente: arXiv
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Bibliographic Details
Main Authors: Ball, Adam, Secondo, Ray, Fomra, Dhruv, Wu, Jingwei, Saha, Samprity, Agrawal, Amit, Lezec, Henri, Kinsey, Nathaniel
Format: Preprint
Published: 2024
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author Ball, Adam
Secondo, Ray
Fomra, Dhruv
Wu, Jingwei
Saha, Samprity
Agrawal, Amit
Lezec, Henri
Kinsey, Nathaniel
author_facet Ball, Adam
Secondo, Ray
Fomra, Dhruv
Wu, Jingwei
Saha, Samprity
Agrawal, Amit
Lezec, Henri
Kinsey, Nathaniel
contents Epsilon-near-zero (ENZ) materials have shown strong refractive nonlinearities that can be fast in an absolute sense. While continuing to advance fundamental science, such as time varying interactions, the community is still searching for an application that can effectively make use of the strong index modulation offered. Here we combine the effect of strong space-time index modulation in ENZ materials with the beam deflection technique to introduce a new approach to optical pulse characterization that we term a space-time knife edge. We show that in this approach, we are able to extract temporal and spatial information of a Gaussian beam with only two time resolved measurements. The approach achieves this without phase-matching requirements (<1 micron thick film) and can achieve a high signal to noise ratio by combining the system with lock-in detection, facilitating the measurement of weak refractive index changes (delta_n ~ 10^-5) for low intensity beams. Thus, the space-time knife edge can offer a new avenue for ultrafast light measurement and demonstrates a use cases of ENZ materials. In support of this, we outline temporal dynamics for refractive index changes in non-colinear experiments opening avenues for better theoretical understanding of both the spatial and temporal dynamics of emerging ENZ films.
format Preprint
id arxiv_https___arxiv_org_abs_2408_00577
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Space-Time Knife-Edge In Epsilon-Near-Zero Films for Ultrafast Pulse Characterization
Ball, Adam
Secondo, Ray
Fomra, Dhruv
Wu, Jingwei
Saha, Samprity
Agrawal, Amit
Lezec, Henri
Kinsey, Nathaniel
Optics
Epsilon-near-zero (ENZ) materials have shown strong refractive nonlinearities that can be fast in an absolute sense. While continuing to advance fundamental science, such as time varying interactions, the community is still searching for an application that can effectively make use of the strong index modulation offered. Here we combine the effect of strong space-time index modulation in ENZ materials with the beam deflection technique to introduce a new approach to optical pulse characterization that we term a space-time knife edge. We show that in this approach, we are able to extract temporal and spatial information of a Gaussian beam with only two time resolved measurements. The approach achieves this without phase-matching requirements (<1 micron thick film) and can achieve a high signal to noise ratio by combining the system with lock-in detection, facilitating the measurement of weak refractive index changes (delta_n ~ 10^-5) for low intensity beams. Thus, the space-time knife edge can offer a new avenue for ultrafast light measurement and demonstrates a use cases of ENZ materials. In support of this, we outline temporal dynamics for refractive index changes in non-colinear experiments opening avenues for better theoretical understanding of both the spatial and temporal dynamics of emerging ENZ films.
title A Space-Time Knife-Edge In Epsilon-Near-Zero Films for Ultrafast Pulse Characterization
topic Optics
url https://arxiv.org/abs/2408.00577