An all-optical signal processor enabling terabit-per-second real-time equalization
Полностью оптический процессор сигналов, обеспечивающий эквализацию в реальном времени со скоростью терабит в секунду
2026-06-11
SCID: 54.1/3j5enepc
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all-optical signal processorchromatic dispersion compensationoptical reservoir computingreal-time equalizationwavelength-division multiplexing
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Abstract (AI)
Large-scale artificial intelligence training demands ultralow-latency, energy-efficient interconnects for massive graphics processing unit clusters. In intensity-modulation/direct-detection links, digital signal processing (DSP) equalization is limited by nonideal equalization caused by phase loss as well as tight power and latency budgets. We present an integrated, programmable optical signal processor (OSP) that functions as a nonlinear universal equalizer and performs all-optical, DSP-free, real-time equalization. A deep reservoir with all-optical readout enables a Vernier scheme with ~1-picosecond (ps) sampling resolution and a tunable memory window. The OSP simultaneously equalizes eight wavelength-division-multiplexing (WDM) channels, delivering 1.6-terabits/second aggregate throughput with <60-picoseconds latency and tens of femtojoules/bit energy consumption. Operating before detection, it provides superior chromatic dispersion compensation, mitigates transceiver bandwidth limits and fiber nonlinearity, and expands the usable WDM window by a factor of 6.8.
Key Findings
1
A deep optical reservoir with all-optical readout provides approximately 1-picosecond sampling resolution and a tunable memory window through a Vernier scheme.
2
An integrated programmable optical signal processor performs nonlinear, all-optical, DSP-free real-time equalization for intensity-modulation/direct-detection links.
3
Operating before photodetection, the processor compensates chromatic dispersion, mitigates transceiver bandwidth limitations and fiber nonlinearity, and expands the usable WDM window by 6.8-fold.
4
The processor simultaneously equalizes eight WDM channels at 1.6-terabits-per-second aggregate throughput, with less than 60-picoseconds latency and energy consumption of tens of femtojoules per bit.
Research Object
integrated programmable all-optical signal processor for real-time equalization of intensity-modulation/direct-detection WDM links
Research Subject
all-optical DSP-free nonlinear equalization performance, including chromatic-dispersion compensation, mitigation of transceiver bandwidth limits and fiber nonlinearity, throughput, latency, energy consumption, and WDM-window expansion
Publication Details
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2026-06-11
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