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October 31, 2025Physica Scripta2 citations

Broadband and compact polarization splitter-rotator on thin-film lithium niobate

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GCGuo-liang CHENXSXing SunJZJiayu Zhang

Key Points

  • The device maintains an extinction ratio exceeding 28.5 dB at 1550 nm, showcasing its efficiency in signal processing.
  • Numerical simulations confirm insertion losses below 0.56 dB over the C-band, highlighting the splitter-rotator's performance.
  • This analysis features a compact design leveraging tapered structures and mode-coupling principles for enhanced functionality.
  • Applications include polarization-division multiplexing transceivers and advanced photonic integrated circuits, supporting high-performance needs.

Abstract

Abstract We propose a broadband and compact polarization splitter-rotator (PSR) based on thin-film lithium niobate, which consists of a triple-taper asymmetric directional coupler (ADC), a linear taper, and an S-bend. The device employs a tapered structure with a gradual width gradient to maintain approximate phase-matching conditions across a broad bandwidth, while leveraging mode-coupling principles to achieve compact dimensions. Numerical simulations show that the device has insertion losses (IL) of less than 0.56 dB over the entire C-band range. At the wavelength of 1550 nm, The device exhibits an IL below 0.53 dB, and an extinction ratio (ER) exceeding 28.5 dB. The device maintains insertion losses less than 1.29 dB and ERs more than 20.9 dB across a 210 nm wide bandwidth. The device length is 60 μm, of which the coupling region is only 26.1 μm. This device exhibits significant potential for applications in polarization-division multiplexing transceivers, on-chip polarization controllers, and high-density photonic integrated circuits.

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Cite This Study

CHEN et al. (2025) studied this question.

synapsesocial.com/papers/6903fee5b25c631a4265fffahttps://doi.org/10.1088/1402-4896/ae141d
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