Continuous Phase Modulation Technology Based on Grating Period Interval for High Grating Coupling Efficiency and Precise Wavelength Control

Fuente: arXiv
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Hauptverfasser: Sun, Yiming, Zhu, Simeng, Yuan, Bocheng, Fan, Yizhe, Al-Rubaiee, Mohanad, Sun, Xiao, Marsh, John H., Sweeney, Stephen J., Hou, Lianping
Format: Preprint
Veröffentlicht: 2024
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author Sun, Yiming
Zhu, Simeng
Yuan, Bocheng
Fan, Yizhe
Al-Rubaiee, Mohanad
Sun, Xiao
Marsh, John H.
Sweeney, Stephen J.
Hou, Lianping
author_facet Sun, Yiming
Zhu, Simeng
Yuan, Bocheng
Fan, Yizhe
Al-Rubaiee, Mohanad
Sun, Xiao
Marsh, John H.
Sweeney, Stephen J.
Hou, Lianping
contents A novel grating modulation technique for laser arrays is proposed and demonstrated. This method modifies the initial phase within each grating period, applying a total phase shift that increments in an arithmetic progression, ensuring equal channel spacing across the array. Despite the varying phase shifts, the device maintains coupling efficiency comparable to traditional uniform grating structures. Furthermore, the continuous phase modulation enhances the stability of the lasing wavelength of the primary mode, reducing sensitivity to fabrication errors. This improved tolerance to manufacturing inaccuracies represents a significant technological advancement, making this approach highly promising for applications requiring precise and stable wavelength control.
format Preprint
id arxiv_https___arxiv_org_abs_2410_00567
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Continuous Phase Modulation Technology Based on Grating Period Interval for High Grating Coupling Efficiency and Precise Wavelength Control
Sun, Yiming
Zhu, Simeng
Yuan, Bocheng
Fan, Yizhe
Al-Rubaiee, Mohanad
Sun, Xiao
Marsh, John H.
Sweeney, Stephen J.
Hou, Lianping
Optics
A novel grating modulation technique for laser arrays is proposed and demonstrated. This method modifies the initial phase within each grating period, applying a total phase shift that increments in an arithmetic progression, ensuring equal channel spacing across the array. Despite the varying phase shifts, the device maintains coupling efficiency comparable to traditional uniform grating structures. Furthermore, the continuous phase modulation enhances the stability of the lasing wavelength of the primary mode, reducing sensitivity to fabrication errors. This improved tolerance to manufacturing inaccuracies represents a significant technological advancement, making this approach highly promising for applications requiring precise and stable wavelength control.
title Continuous Phase Modulation Technology Based on Grating Period Interval for High Grating Coupling Efficiency and Precise Wavelength Control
topic Optics
url https://arxiv.org/abs/2410.00567