Yuan, Jinhui, Sang, Xinzhu, Wu, Qiang, Yu, Chongxiu, Shen, Xiangwei, Wang, Kuiru, Yan, Binbin, Han, Ying, Zhou, Guiyao, Semenova, Yuliya, Farrell, Gerald and Hou, Lantian (2013) Efficient and broadband Cherenkov radiations in the multi-knots of a hollow-core photonic crystal fiber cladding. Optics Communications, 291. pp. 317-320. ISSN 0030-4018
Full text not available from this repository. (Request a copy)Abstract
The Cherenkov radiations (CRs) at visible wavelengths are efficiently generated based on the soliton self-frequency shift (SSFS) by coupling the 120 fs pulses into the fundamental mode propagated in the multi-knots of a hollow-core photonic crystal fiber cladding (HC-PCFC). When the pump operates at 830 nm with the average power of 300 mW at the knots 1–4 , the central wavelengths of generated CRs λCR are 476 nm, 454 nm, 554 nm, and 580 nm, the conversion efficiencies ηCR are 33%, 35%, 30%, and 29%, and the corresponding bandwidths BCR are 57 nm, 74 nm, 25 nm, and 50 nm, respectively. To the best of our knowledge, ηCR of 35% and BCR of 74 nm are the best experimental results reported with >100 fs pump pulse. The efficient and broadband CRs can be wavelength-tunable over the whole visible wavelength by adjusting the wavelengths of pump pulses coupled into different knots. The result can be used as the multi-channel ultrashort pulse source for many important applications in the multiphoton microscope and ultrafast photonics.
Item Type: | Article |
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Uncontrolled Keywords: | fundamental mode, Soliton self-frequency shift |
Subjects: | H600 Electronic and Electrical Engineering |
Department: | Faculties > Engineering and Environment > Mathematics, Physics and Electrical Engineering |
Depositing User: | Ay Okpokam |
Date Deposited: | 15 May 2015 15:37 |
Last Modified: | 12 Oct 2019 19:08 |
URI: | http://nrl.northumbria.ac.uk/id/eprint/22499 |
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