Full-span reversible space-time birefringence

Fuente: arXiv
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Main Authors: Yu, Chenhui, Zhu, Guanyi, Xu, Mingliang, He, Fei, Song, Liwei, Tian, Ye, Leng, Yuxin, Li, Ruxin
Format: Preprint
Published: 2026
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author Yu, Chenhui
Zhu, Guanyi
Xu, Mingliang
He, Fei
Song, Liwei
Tian, Ye
Leng, Yuxin
Li, Ruxin
author_facet Yu, Chenhui
Zhu, Guanyi
Xu, Mingliang
He, Fei
Song, Liwei
Tian, Ye
Leng, Yuxin
Li, Ruxin
contents Birefringence, the polarization-dependent splitting of light in anisotropic crystals, enables diverse optical phenomena and advanced functionalities such as optical communication, nonlinear optics, and quantum optics. However, conventional methods for controlling birefringence typically rely on engineering the optical crystal structure or applying external stimuli such as electric fields, mechanical stress or thermal variations, which are often constrained by limited tunability, challenges in integration with compact photonic devices or slow response time. Here, we introduce a new degree of freedom to manipulate the birefringence of light propagation in optical crystals through programming the spatiotemporal spectral phase of the incident light wave. We demonstrate this approach achieves continuous tuning of birefringence across a spectrum more than 100 times broader than that achievable with conventional birefringence tuning, spanning from positive through zero to negative values, irrespective of the crystal's optical sign and without inherent physical limitations. This unique optical behavior provides a versatile platform for investigating the complex dynamics of wave flow in anisotropic media, while the broad tunability of this space-time birefringence will spur innovations in ultrafast optical manipulation, optical computation, and quantum information processing-applications that demand rapid and flexible device reconfiguration.
format Preprint
id arxiv_https___arxiv_org_abs_2602_01792
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Full-span reversible space-time birefringence
Yu, Chenhui
Zhu, Guanyi
Xu, Mingliang
He, Fei
Song, Liwei
Tian, Ye
Leng, Yuxin
Li, Ruxin
Optics
Birefringence, the polarization-dependent splitting of light in anisotropic crystals, enables diverse optical phenomena and advanced functionalities such as optical communication, nonlinear optics, and quantum optics. However, conventional methods for controlling birefringence typically rely on engineering the optical crystal structure or applying external stimuli such as electric fields, mechanical stress or thermal variations, which are often constrained by limited tunability, challenges in integration with compact photonic devices or slow response time. Here, we introduce a new degree of freedom to manipulate the birefringence of light propagation in optical crystals through programming the spatiotemporal spectral phase of the incident light wave. We demonstrate this approach achieves continuous tuning of birefringence across a spectrum more than 100 times broader than that achievable with conventional birefringence tuning, spanning from positive through zero to negative values, irrespective of the crystal's optical sign and without inherent physical limitations. This unique optical behavior provides a versatile platform for investigating the complex dynamics of wave flow in anisotropic media, while the broad tunability of this space-time birefringence will spur innovations in ultrafast optical manipulation, optical computation, and quantum information processing-applications that demand rapid and flexible device reconfiguration.
title Full-span reversible space-time birefringence
topic Optics
url https://arxiv.org/abs/2602.01792