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个人简介

學歷 民國70年,台灣大學物理系學士 民國77年,美國哈佛大學應用科學部博士 經歷 民國77至79年,美國麻省理工學院電機系博士後研究員 民國79至81年,中央研究院原子與分子科學研究所助研究員 民國79年至85年,台灣大學電機系合聘副教授 民國81年至85年,中央研究院原子與分子科學研究所副研究員 民國84年,美國加州史丹福大學物理系訪問研究 民國85年迄今,中央研究院原子與分子科學研究所研究員 民國85年至94年,台灣大學電機系合聘教授 民國94年迄今,台灣大學物理系合聘教授 民國95年至97年,中央大學物理系合聘特聘教授 民國98年迄今,中央大學物理系合聘講座教授 榮譽及獎項 民國83年,國科會優等研究獎 民國83年,國科會訪問學者獎學金 民國84年,國科會優等研究獎 民國85年,中央研究院年輕學者研究著作獎 民國87年,國科會傑出研究獎 民國91年,中華民國物理學會會士 研究成果 Photon deceleration in plasma wakes generates single-cycle relativistic tunable infrared pulses Relativistic single-cycle tunable infrared pulses generated from a tailored plasma density structure Femtosecond probing of plasma wakefields and observation of a plasma wake echo using a relativistic electron bunch Temporal characterization of ultrashort linearly chirped electron bunches generated from a laser wakefield accelerator Relativistic plasma astrophysics with intense lasers A systematic approach for obtaining the Green functions of time dependent Schroedinger equations by Fourier transform

研究领域

雷射驅動粒子加速器 極紫外光雷射 相對論性電漿非線性光學 強場雷射科技

近期论文

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Energy diffusion due to nonlinear perturbation on linear Hamiltonians, Gin-yih Tsaur and Jyhpyng Wang, Physical Review E 54, 4657 (1996). Population Diffusion and Equipartition in Quantum Systems of Many Degrees of Freedom, Gin-yih Tsaur and Jyhpyng Wang, Physical Review Letters 80, 3682(1998). Integration of the Schroedinger equation by canonical transformations, Gin-yih Tsaur and Jyhpyng Wang, Physical Review A 65, 012104 (2001). Tomography of the injection and acceleration processes that produce a monoenergetic electron beam in a laser wakefield accelerator, C.-T. Hsieh, C.-M. Huang, C.-L. Chang, Y.-C. Ho, Y.-S. Chen, J.-Y. Lin, J. Wang, and S.-Y. Chen, Physical Review Letters 96, 095001 (2006). Enhancement of relativistic harmonic generation by an optically-preformed periodic plasma waveguide, C.-C. Kuo, C.-H. Pai, M.-W. Lin, K.-H. Lee, J.-Y. Lin, J. Wang, and S.-Y. Chen, Physical Review Letters 98, 033901 (2007). Dramatic enhancement of optical-field-ionization collisional-excitation x-ray lasing by an optically preformed plasma waveguide, M.-C. Chou, P.-H. Lin, C.-A. Lin, J.-Y. Lin, J. Wang, and S.-Y. Chen, Physical Review Letters 99, 063904 (2007). Backward Raman Amplification in a Plasma Waveguide, C.-H. Pai, M.-W. Lin, L.-C. Ha, S.-T. Huang, Y.-C. Tsou, H.-H. Chu, J.-Y. Lin, J. Wang, and S.-Y. Chen, Physical Review Letters 101, 065005 (2008). Relativistic optical rectification driven by a pulsed Gaussian beam, Gin-yih Tsaur and Jyhpyng Wang, Physical Review A 80, 023802 (2009). Generation of intense ultrashort midinfrared pulses by laser-plasma interaction in the bubble regime, C.-H. Pai, Y.-Y. Chang, L.-C. Ha, Z.-H. Xie, M.-W. Lin, J.-M. Lin, Y.-M. Chen, G. Tsaur, H.-H. Chu, S.-H. Chen, J.-Y. Lin, J. Wang, and S.-Y. Chen, Physical Review A 82, 063804 (2010). Relativistic birefringence induced by a high-intensity laser field in a plasma, Gin-yih Tsaur and Jyhpyng Wang, Physical Review A 83, 033801 (2011). Generation of quasi-monoenergetic protons from thin multi-ion foils by a combination of laser radiation pressure acceleration and shielded Coulomb repulsion, Tung-Chang Liu, Xi Shao, Chuan-Sheng Liu, Minqing He, Bengt Eliasson, Vipin Tripathi, Jao-Jang Su, Jyhpyng Wang, and Shih-Hung Chen, New Journal of Physics 15, 025026 (2013). A universal Laplace-transform approach to solving Schrödinger equations for all known solvable models, Gin-yih Tsaur and Jyhpyng Wang, European Journal of Physics 35, 015006 (2014). A 110-TW multiple-beam laser system with a 5-TW wavelength-tunable auxiliary beam for versatile control of laser-plasma interaction, Te-Sheng Hung, Chi-Hsiang Yang, Jyhpyng Wang, Szu-yuan Chen, Jiunn-Yuan Lin, and Hsu-hsin Chu, Applied Physics B 117, 1189 (2014). Laser acceleration of protons using multi-ion plasma gaseous targets, Tung-Chang Liu, Xi Shao, Chuan-Sheng Liu, Bengt Eliasson, W. T. Hill III, Jyhpyng Wang, and Shih-Hung Chen, New Journal of Physics 17, 023018 (2015). Single-shot temporal envelope measurement of ultrashort extreme-UV pulses by spatially encoded transmission gating, Hsu-hsin Chu, Chi-Hsiang Yang, Shih-Cheng Liu, and Jyhpyng Wang, Opt. Express 23, 34082 (2015). Temporal characterization of ultrashort linearly chirped electron bunches generated from a laser wakefield accelerator, C. J. Zhang, J. F. Hua, Y. Wan, B. Guo, C.-H. Pai, Y. P. Wu, F. Li, H.-H. Chu, Y. Q. Gu, W. B. Mori, C. Joshi, J. Wang, and W. Lu, Physical Review Accelerators and Beams 19, 062802 (2016). Femtosecond Probing of Plasma Wakefields and Observation of the Plasma Wake Reversal Using a Relativistic Electron Bunch, C. J. Zhang, J. F. Hua, Y. Wan, C.-H. Pai, B. Guo, J. Zhang, Y. Ma, F. Li, Y. P. Wu, H.-H. Chu, Y. Q. Gu, X. L. Xu, W. B. Mori, C. Joshi, J. Wang, and W. Lu, Physical Review Letters 119, 064801 (2017) (editor’s suggestion). Relativistic single-cycle tunable infrared pulses generated from a tailored plasma density structure, Zan Nie, Chih-Hao Pai, Jianfei Hua, Chaojie Zhang, Yipeng Wu, Yang Wan, Fei Li, Jie Zhang, Zhi Cheng, Qianqian Su, Shuang Liu, Yue Ma, Xiaonan Ning, Yunxiao He, Wei Lu, Hsu-Hsin Chu, Jyhpyng Wang, Warren B. Mori, and Chan Joshi, Nature Photonics 12, 489 (2018) (cover story of the 2018 August issue). Photon deceleration in plasma wakes generates single-cycle relativistic tunable infrared pulses, Zan Nie, Chih-Hao Pai, Jie Zhang, Xiaonan Ning, Jianfei Hua, Yunxiao He, Yipeng Wu, Qianqian Su, Shuang Liu, Yue Ma, Zhi Cheng, Wei Lu1, Hsu-Hsin Chu, Jyhpyng Wang, Chaojie Zhang, Warren B. Mori, and Chan Joshi, Nature Communication 11, 2787 (2020)

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