Kerr-induced Spectral Interferometry for Direct Ultra-sensitive Phase Recovery

Fuente: arXiv
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Hauptverfasser: Cheeran, Glitta R., Müftüoğlu, Mehmet, Saeed, Sobhi, Fischer, Bennet, Chemnitz, Mario
Format: Preprint
Veröffentlicht: 2026
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author Cheeran, Glitta R.
Müftüoğlu, Mehmet
Saeed, Sobhi
Fischer, Bennet
Chemnitz, Mario
author_facet Cheeran, Glitta R.
Müftüoğlu, Mehmet
Saeed, Sobhi
Fischer, Bennet
Chemnitz, Mario
contents Measuring the phase of light is fundamental to optical imaging, sensing, and signal processing applications. Conventional optical phase measurements rely on multipath configurations, bulky interferometric setups, and computationally intensive data pipelines, limiting scalability, robustness, and practicality. We introduce a technique that allows for reference-free in-line phase retrieval of abrupt phase transitions in optical pulses directly from spectral measurements. Theory, simulations, and experiments concurrently explain the effect as a result of a Kerr-mediated interference between a projected linear wave component and the high-intensity residual of the phase-altered pulse. Utilizing this phenomenon, we demonstrate algorithm-free phase measurements of up to π/385 sensitivity and shot-to-shot signal prominence at 13 dB above noise at 80 MHz rates and 50 pJ pulse energies. This approach offers new paths toward the use of femtosecond pulses as broadband data carriers for optical communications, information processing, and direct high-throughput phase imaging.
format Preprint
id arxiv_https___arxiv_org_abs_2602_22845
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Kerr-induced Spectral Interferometry for Direct Ultra-sensitive Phase Recovery
Cheeran, Glitta R.
Müftüoğlu, Mehmet
Saeed, Sobhi
Fischer, Bennet
Chemnitz, Mario
Optics
Measuring the phase of light is fundamental to optical imaging, sensing, and signal processing applications. Conventional optical phase measurements rely on multipath configurations, bulky interferometric setups, and computationally intensive data pipelines, limiting scalability, robustness, and practicality. We introduce a technique that allows for reference-free in-line phase retrieval of abrupt phase transitions in optical pulses directly from spectral measurements. Theory, simulations, and experiments concurrently explain the effect as a result of a Kerr-mediated interference between a projected linear wave component and the high-intensity residual of the phase-altered pulse. Utilizing this phenomenon, we demonstrate algorithm-free phase measurements of up to π/385 sensitivity and shot-to-shot signal prominence at 13 dB above noise at 80 MHz rates and 50 pJ pulse energies. This approach offers new paths toward the use of femtosecond pulses as broadband data carriers for optical communications, information processing, and direct high-throughput phase imaging.
title Kerr-induced Spectral Interferometry for Direct Ultra-sensitive Phase Recovery
topic Optics
url https://arxiv.org/abs/2602.22845