New optical fibre based technologies and their application in highly nonlinear systems
This thesis investigates new fibre technologies and their application in nonlinear optical systems, designed mainly for telecommunications. The thesis includes a study of two different directions in achieving a high nonlinearity in a fibre system, namely
Camerlingo, Angela
core
Real-time evolution dynamics during transitions between different dissipative soliton states in a single fiber laser. [PDF]
Xu S, Zeng J, Sander MY.
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Advances of Research on Dual-Frequency Solid-State Lasers for Synthetic-Wave Absolute-Distance Interferometry. [PDF]
Jiao M +6 more
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Intracavity Raman scattering couples soliton molecules with terahertz phonons. [PDF]
Völkel A +4 more
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Feedback Regimes of LFI Sensors: Experimental Investigations. [PDF]
Bertling K +4 more
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Phase-multiplied interferometry via cavity dynamics for resolution-enhanced coherent ranging. [PDF]
Wang Y +12 more
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Ultrafast optical gating in a nonlinear lithium niobate microcavity. [PDF]
Karni O, Vaswani C, Chervy T.
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Entanglement-enhanced matter-wave interferometry in a high-finesse cavity. [PDF]
Greve GP, Luo C, Wu B, Thompson JK.
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High power ultrafast phase-locked laser at 2060 nm from a doubly resonant optical parametric oscillator. [PDF]
Rao H +6 more
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High-Coherence, Physically Separable Dual-Frequency Fiber Laser Based on Bidirectional Dual-Path Ring Cavity. [PDF]
Li S, Ji B, Zhu F, Gan Y, Li Z, Wen Q.
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