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physics.optics2025

High-pulse-energy integrated mode-locked lasers based on a Mamyshev oscillator

Zheru Qiu, Jianqi Hu, Xuan Yang +9

Ultrafast lasers have unlocked numerous advances across science and technology: they enable corneal surgery, reveal chemical reaction dynamics, and underpin optical atomic clocks.…

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

Narrow-linewidth, piezoelectrically tunable photonic integrated blue laser

Anat Siddharth, Asger B. Gardner, Xinru Ji +8

Frequency-agile lasers operating in the ultraviolet-to-blue spectral range (360-480 nm) are critical enablers for a wide range of technologies, including free-space and underwater…

physics.optics2025

Hyperparametric solitons in nondegenerate optical parametric oscillators

Haizhong Weng, Xinru Ji, Mugahid Ali +7

Dissipative solitons and their associated low-noise, chip-scale frequency combs hold great potential for applications in optical communications, spectroscopy, precision time-keepin…

physics.optics2025

Copper Damascene Process-Based High-Performance Thin Film Lithium Tantalate Modulators

Mengxin Lin, Zihan Li, Alexander Kotz +4

Interfacing electrical and optical systems is a ubiquitous requirement for modern networks. Competitive footprint, efficiency, and bandwidth figures have propelled interest in depl…

physics.optics2025

Copper-impurity-free photonic integrated circuits enable deterministic soliton microcombs

Xinru Ji, Xurong Li, Zheru Qiu +5

Chip-scale optical frequency combs based on microresonators (microcombs) enable GHz-THz repetition rates, broad bandwidth, compactness, and compatibility with wafer-scale manufactu…