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physics.optics20253 cited

Octave-spanning, deterministic single soliton generation in 4H-silicon carbide-on-insulator microring resonators

Yi Zheng, Liping Zhou, Chengli Wang +5

The miniaturization of self-referencing frequency comb systems enables emerging applications in metrology and spectroscopy. One major challenge in realizing the chip-scale self-ref…

physics.optics2025

Heterogeneously integrated lithium tantalate-on-silicon nitride modulators for high-speed communications

Jiachen Cai, Alexander Kotz, Hugo Larocque +7

Driven by the prospects of higher bandwidths for optical interconnects, integrated modulators involving materials beyond those available in silicon manufacturing increasingly rely…

physics.optics2025

Space compatibility of emerging, wide-bandgap, ultralow-loss integrated photonics

Yue Hu, Xue Bai, Baoqi Shi +15

Integrated photonics has revolutionized optical communication, sensing, and computation, offering miniaturized and lightweight solutions for spacecraft with limited size and payloa…

physics.optics2025

Stable Soliton Microcomb Generation in X-cut Lithium Tantalate via Thermal-Assisted Photorefractive Suppression

Jiachen Cai, Shuai Wan, Bowen Chen +14

Chip-based soliton frequency microcombs combine compact size, broad bandwidth, and high coherence, presenting a promising solution for integrated optical telecommunications, precis…

physics.optics2024

Ultrabroadband thin-film lithium tantalate modulator for high-speed communications

Chengli Wang, Dengyang Fang, Alexander Kotz +7

The continuous growth of global data traffic over the past three decades, along with advances in disaggregated computing architectures, presents significant challenges for optical…

physics.optics2024

Integrated Triply Resonant Electro-Optic Frequency Comb in Lithium Tantalate

Junyin Zhang, Chengli Wang, Connor Denney +11

Integrated frequency comb generators based on Kerr parametric oscillation have led to chip-scale, gigahertz-spaced combs with new applications spanning hyperscale telecommunication…