Search Results - "Zhuo, H. B."

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  1. 1

    Branching of High-Current Relativistic Electron Beam in Porous Materials by Jiang, K, Huang, T W, Li, R, Yu, M Y, Zhuo, H B, Wu, S Z, Zhou, C T, Ruan, S C

    Published in Physical review letters (05-05-2023)
    “…Propagation of high-current relativistic electron beam (REB) in plasma is relevant to many high-energy astrophysical phenomena as well as applications based on…”
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  2. 2

    Nanoscale Electrostatic Modulation of Mega-Ampere Electron Current in Solid-Density Plasmas by Li, R, Huang, T W, Ju, L B, Yu, M Y, Zhang, H, Wu, S Z, Zhuo, H B, Zhou, C T, Ruan, S C

    Published in Physical review letters (10-12-2021)
    “…Transport of high-current relativistic electron beams in dense plasmas is of interest in many areas of research. However, so far the mechanism of such…”
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  3. 3

    Identify spin property of relativistic electrons in fully relativistic laser fields by Li, X B, Gan, L F, Wang, J, Jiao, J L, Jin, S, Zhuo, H B, Zhou, C T, Zhu, S P, He, X T, Qiao, B

    Published in New journal of physics (01-12-2021)
    “…Abstract A semiclassical method is developed to study the spin evolution of a relativistic electron in an fully relativistic laser pulse. Different from the…”
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  4. 4

    Collimation of Energetic Electrons from a Laser-Target Interaction by a Magnetized Target Back Plasma Preformed by a Long-Pulse Laser by Zhuo, H. B., Chen, Z. L., Sheng, Z. M., Chen, M., Yabuuchi, T., Tampo, M., Yu, M. Y., Yang, X. H., Zhou, C. T., Tanaka, K. A., Zhang, J., Kodama, R.

    Published in Physical review letters (29-05-2014)
    “…It is demonstrated experimentally and by numerical simulations that the presence of a long-pulse-laser-created back plasma on the target backside can focus the…”
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  5. 5

    Generation of relativistic high-order-mode laser pulse using plasma waveguide by Yu, D Y, Zou, D B, Yu, M Y, Yu, T P, Yin, Y, Shao, F Q, Zhuo, H B, Zhou, C T, Ruan, S C

    Published in New journal of physics (05-08-2019)
    “…An all-optical method for generating ultra-intense high-order-mode light pulse is investigated with three-dimensional particle-in-cell simulation. We find that…”
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  6. 6

    Propagation of intense laser pulses in strongly magnetized plasmas by Yang, X. H., Yu, W., Xu, H., Yu, M. Y., Ge, Z. Y., Xu, B. B., Zhuo, H. B., Ma, Y. Y., Shao, F. Q., Borghesi, M.

    Published in Applied physics letters (01-06-2015)
    “…Propagation of intense circularly polarized laser pulses in strongly magnetized inhomogeneous plasmas is investigated. It is shown that a left-hand circularly…”
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  7. 7

    Quasimonoenergetic proton bunch generation by dual-peaked electrostatic-field acceleration in foils irradiated by an intense linearly polarized laser by Zhuo, H B, Chen, Z L, Yu, W, Sheng, Z M, Yu, M Y, Jin, Z, Kodama, R

    Published in Physical review letters (06-08-2010)
    “…It is found that stable proton acceleration from a thin foil irradiated by a linearly polarized ultraintense laser can be realized for appropriate foil…”
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  8. 8

    Tunable radiation source by coupling laser-plasma-generated electrons to a periodic structure by Jin, Z, Chen, Z L, Zhuo, H B, Kon, A, Nakatsutsumi, M, Wang, H B, Zhang, B H, Gu, Y Q, Wu, Y C, Zhu, B, Wang, L, Yu, M Y, Sheng, Z M, Kodama, R

    Published in Physical review letters (23-12-2011)
    “…Near-infrared radiation around 1000 nm generated from the interaction of a high-density MeV electron beam, obtained by impinging an intense ultrashort laser…”
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  9. 9

    Enhancement of electron injection in laser wakefield acceleration using auxiliary interfering pulses by Ge, Z Y, Yin, Y, Li, S X, Yu, M Y, Yu, T P, Xu, H, Zhuo, H B, Ma, Y Y, Shao, F Q, Tian, C L

    Published in New journal of physics (09-10-2012)
    “…A relatively simple interfering-pulses-assisted laser wakefield acceleration (IPA-LWFA) scheme is proposed for enhancing the charge of the LWFA electron bunch…”
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  10. 10

    Efficient high-charge Laguerre-Gaussian mode conversion by using a periscopic axicon mirror by Zhang, S J, Zhuo, H B, Yin, Y, Zou, D B, Zhao, N, Zhou, W M

    Published in Optics express (11-04-2022)
    “…Laguerre-Gaussian (LG) modes can be converted from fundamental Gaussian mode by using phase optical elements such as spiral phase plates (SPP), but the…”
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  11. 11

    Laser-Driven Ion Acceleration from Plasma Micro-Channel Targets by Zou, D. B., Pukhov, A., Yi, L. Q., Zhuo, H. B., Yu, T. P., Yin, Y., Shao, F. Q.

    Published in Scientific reports (20-02-2017)
    “…Efficient energy boost of the laser-accelerated ions is critical for their applications in biomedical and hadron research. Achiev-able energies continue to…”
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  12. 12

    Generation of bright attosecond x-ray pulse trains via Thomson scattering from laser-plasma accelerators by Luo, W, Yu, T P, Chen, M, Song, Y M, Zhu, Z C, Ma, Y Y, Zhuo, H B

    Published in Optics express (29-12-2014)
    “…Generation of attosecond x-ray pulse attracts more and more attention within the advanced light source user community due to its potentially wide applications…”
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  13. 13

    Efficient guiding and focusing of intense laser pulse using periodic thin slits by Xu, L., Huang, T. W., Jiang, K., Wu, C. N., Peng, H., Chen, P., Li, R., Zhuo, H. B., Zhou, C. T.

    Published in Matter and radiation at extremes (01-07-2024)
    “…Slits have been widely used in laser–plasma interactions as plasma optical components for generating high-harmonic light and controlling laser-driven particle…”
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  14. 14

    Nonlinear branched flow of intense laser light in randomly uneven media by Jiang, K., Huang, T. W., Wu, C. N., Yu, M. Y., Zhang, H., Wu, S. Z., Zhuo, H. B., Pukhov, A., Zhou, C. T., Ruan, S. C.

    Published in Matter and radiation at extremes (01-03-2023)
    “…Branched flow is an interesting phenomenon that can occur in diverse systems. It is usually linear in the sense that the flow does not alter the properties of…”
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  15. 15

    Erratum: Laser-Driven Ion Acceleration from Plasma Micro-Channel Targets by Zou, D. B., Pukhov, A., Yi, L. Q., Zhuo, H. B., Yu, T. P., Yin, Y., Shao, F. Q.

    Published in Scientific reports (23-03-2017)
    “…Scientific Reports 7: Article number: 42666; published online: 20 February 2017; updated: 23 March 2017 The original version of this Article contained a…”
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  16. 16

    Generation of bright attosecond x-ray pulse trains via Thomson scattering from laser-plasma accelerators: errata by Luo, W, Yu, T P, Chen, M, Song, Y M, Zhu, Z C, Ma, Y Y, Zhuo, H B

    Published in Optics express (23-03-2015)
    “…We report and correct a couple of calculation errors in the x-ray flux and maximum peak brightness in our paper [Opt. Express 22, 32098 (2014)]…”
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  17. 17

    Electron bow-wave injection of electrons in laser-driven bubble acceleration by Ma, Y Y, Kawata, S, Yu, T P, Gu, Y Q, Sheng, Z M, Yu, M Y, Zhuo, H B, Liu, H J, Yin, Y, Takahashi, K, Xie, X Y, Liu, J X, Tian, C L, Shao, F Q

    “…An electron injection regime in laser wake-field acceleration, namely electron bow-wave injection, is investigated by two- and three-dimensional…”
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  18. 18

    The nonlinear effect in relativistic Compton scattering for an intense circularly polarized laser by Luo, W, Zhuo, H B, Ma, Y Y, Zhu, Z C, Fan, G T, Xu, W, Song, Y M

    Published in Physica scripta (01-07-2014)
    “…Compton scattering between an intense laser pulse and a relativistic electron beam offers a promising development path toward high-energy, high-brightness x-…”
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  19. 19

    Simultaneous generation of monoenergetic tunable protons and carbon ions from laser-driven nanofoils by Yu, T P, Yin, Y, Zou, D B, Ge, Z Y, Yang, X H, Zhuo, H B, Ma, Y Y, Shao, F Q, Pukhov, A

    Published in Optics express (23-09-2013)
    “…Simultaneous generation of monoenergetic tunable protons and carbon ions from intense laser multi-component nanofoil interaction is demonstrated by using…”
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  20. 20

    Mitigating the relativistic laser beam filamentation via an elliptical beam profile by Huang, T W, Zhou, C T, Robinson, A P L, Qiao, B, Zhang, H, Wu, S Z, Zhuo, H B, Norreys, P A, He, X T

    “…It is shown that the filamentation instability of relativistically intense laser pulses in plasmas can be mitigated in the case where the laser beam has an…”
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