4.6 Article

N-channel comb filtering and lasing in PT-symmetric superstructures

期刊

PHYSICAL REVIEW A
卷 103, 期 1, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.103.013503

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资金

  1. Anna University through an Anna Centenary Research Fellowship [CFR/ACRF-2018/AR1/24]
  2. DST-SERB [SB/DF/04/2017]
  3. University Grants Commission (UGC), Government of India [F.4-2/2006 (BSR)/PH/19-20/0025]

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This paper presents a comb spectrum generating device based on Bragg grating superstructures with gain and loss, providing different optimization methods for various applications and requirements, including physical length, gain-loss parameters, etc.
A comb spectrum generating device based on Bragg grating superstructures with gain and loss is suggested in this paper. The paper includes a comprehensive analysis of the device formulation and generation and manipulation of the comb spectrum with a number of degrees of freedom such as duty cycle, sampling period, and gain-loss parameter. For applications such as RF traversal filters and tunable multiwavelength laser sources, the reflected intensities of the comb resulting from the superstructures should have uniform intensities, and this is guaranteed by optimizing the physical length of the device and gain and loss in the unbroken PT-symmetric regime. Alternatively, it can be accomplished by reducing the duty cycle ratio of the superstructure to extremely small values in the broken PT-symmetric regime. Such a customization will degrade the reflectivity of the conventional grating superstructures, while it gives rise to narrow spectral lines with high reflectivity in the proposed system. Remarkably, combs with an inverted envelope are generated for larger values of gain and loss.

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