Results 1 to 10 of about 30,357 (177)

Platicon microcomb generation using laser self-injection locking [PDF]

open access: yesNature Communications, 2022
’Here the authors provide the demonstration of platicon comb generation in an integrated photonic chip using laser self-injection locking, They take advantage of platicons generation in normal GVD resonators, which significantly relaxes the material and ...
Grigory Lihachev   +10 more
doaj   +8 more sources

Dynamics of soliton self-injection locking in optical microresonators [PDF]

open access: yesNature Communications, 2021
Self-injection locking of the pump laser for a soliton microcomb has significantly relaxed the requirements for laser drives. Here the authors study self-injection locking in experiment and theory and reveal that the soliton formation is feasible with ...
Andrey S. Voloshin   +8 more
doaj   +5 more sources

Phase-stabilised self-injection-locked microcomb [PDF]

open access: yesNature Communications
Microresonator frequency combs (microcombs) hold great potential for precision metrology within a compact form factor, impacting a wide range of applications such as point-of-care diagnostics, environmental monitoring, time-keeping, navigation and ...
Thibault Wildi   +4 more
doaj   +7 more sources

Wavelength-Tunable Narrow-Linewidth Laser Diode Based on Self-Injection Locking with a High-Q Lithium Niobate Microring Resonator [PDF]

open access: yesNanomaterials, 2023
We demonstrate a narrow linewidth 980 nm laser by self-injection locking of an electrically pumped distributed-feedback (DFB) laser diode to a high quality (Q) factor (>105) lithium niobate (LN) microring resonator.
Ting Huang   +11 more
doaj   +2 more sources

Kerr nonlinearity, self-injection locking and correlation in a microresonator [PDF]

open access: yesScientific Reports
Production of entangled photon pairs is important in secure communication systems, quantum computing, and fundamental physics experiments. Achieving efficient generation of such photon pairs with low-loss parametric oscillators is a key objective in ...
Andrey Matsko   +2 more
doaj   +2 more sources

Farey tree locking of terahertz quantum cascade laser frequency combs [PDF]

open access: yesLight: Science & Applications
Frequency combs show various applications in molecular fingerprinting, imaging, communications, and so on. In the terahertz frequency range, semiconductor-based quantum cascade lasers (QCLs) are ideal platforms for realizing the frequency comb operation.
Guibin Liu   +14 more
doaj   +2 more sources

Electrically pumped soliton microcombs on thin-film lithium niobate [PDF]

open access: yesNanophotonics
Thin-film lithium niobate (TFLN) has enabled efficient on-chip electro-optic modulation and frequency conversion for information processing and precision measurement.
Lv Xiaomin   +12 more
doaj   +2 more sources

Synthetic Self-injection Locked Microcombs for Deterministic Single Soliton Operation [PDF]

open access: yesEPJ Web of Conferences, 2023
Self-injection locking to a photonic crystal ring-microresonator with synthetic back-reflection is demonstrated for the first time. The on-chip system permits deterministic generation of exclusively single-soliton microcombs and does not rely on random ...
Ulanov Alexander   +5 more
doaj   +1 more source

On-Demand Q-Switching Regime in Optically Injected Dual-Section Quantum-Dot Laser

open access: yesIEEE Photonics Journal, 2022
Pure Q-switching (self-pulsating) behaviour is shown for the first time in an optically injected two-section quantum-dot laser. Upon CW optical injection, it was possible to switch the operation regime from free-running mode-locking to locked Q-switching.
Ana Filipa Ribeiro   +2 more
doaj   +1 more source

Self-injection locking of a laser diode to a high-Q silicon WGM microresonator [PDF]

open access: yesEPJ Web of Conferences, 2019
The key properties of the self-injection locking regime of a laser diode to a high-Q microresonator with whispering gallery mode made of crystalline silicon are considered.
Shitikov Artem   +6 more
doaj   +1 more source

Home - About - Disclaimer - Privacy