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Dive into the research topics where Yindong Huang is active.

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Featured researches published by Yindong Huang.


international conference on infrared, millimeter, and terahertz waves | 2015

Theoretical study of terahertz generation from atoms and aligned molecules driven by two-color laser fields

Wenbo Chen; Yindong Huang; Chao Meng; Jinlei Liu; Zhaoyan Zhou; Dongwen Zhang; Jianmin Yuan; Zengxiu Zhao

We study the generation of terahertz (THz) radiation from atoms and molecules driven by an ultrashort fundamental laser and its second harmonic field by solving time-dependent Schrödinger equation. The simulations show that the initial wave-packet and its subsequent acceleration in the laser field, and rescattering with long-range Coulomb potential play key roles on THz generation. We also present the dependence of the optimal phase delay and yield of terahertz radiation on the laser intensity, wavelength, duration, the ratio of two-color laser components, and against the molecular alignment.


Physical Review Letters | 2015

Joint Measurements of Terahertz Wave Generation and High-Harmonic Generation from Aligned Nitrogen Molecules Reveal Angle-Resolved Molecular Structures.

Yindong Huang; Chao Meng; Xiaowei Wang; Zhihui Lü; Dongwen Zhang; Wenbo Chen; Jing Zhao; Jianmin Yuan; Zengxiu Zhao

We report the synchronized measurements of terahertz wave generation and high-harmonic generation from aligned nitrogen molecules in dual-color laser fields. Both yields are found to be alignment dependent, showing the importance of molecular structures in the generation processes. By calibrating the angular ionization rates with the terahertz yields, we present a new way of retrieving the angular differential photoionization cross section (PICS) from the harmonic signals which avoids specific model calculations or separate measurements of the alignment-dependent ionization rates. The measured PICS is found to be consistent with theoretical predications, although some discrepancies exist. This all-optical method provides a new alternative for investigating molecular structures.


Journal of Physics B | 2013

Attosecond synchronization of terahertz wave and high-harmonics

Zhihui Lü; Dongwen Zhang; Chao Meng; Xiyu Du; Zhaoyan Zhou; Yindong Huang; Zengxiu Zhao; Jianmin Yuan

Argon atom ionizing in the ultrafast two-colour field has been used to investigate the physical mechanism of terahertz (THz) generation. We measured simultaneously pulse energies of THz and high-harmonics as the phase delay between the fundamental and its second harmonic was varied. The optimal phase delay of THz generation is determined according to the inherent attochirp of the emitted high-harmonics. The dynamic analysis of the tunnelling electron wave packet driven by the Coulomb–laser coupling shows that laser-assisted soft collisions of the electron wave packet with the atomic core play a key role. It is demonstrated that the rescattering process, being indispensable in high-harmonic generation processes, dominates THz wave generation as well in a more elaborate way.


Optics Express | 2016

In situ spatial mapping of Gouy phase slip with terahertz generation in two-color field

Chao Meng; Zhihui Lü; Yindong Huang; Xiaowei Wang; Wenbo Chen; Dongwen Zhang; Zengxiu Zhao; Jianmin Yuan

We establish a one-to-one mapping between the local phase slip and the spatial position near the focus by scanning a thin jet along the propagation direction of laser beams. The measurement shows that the optimal phase of terahertz can be utilized to characterize in situ the spatially dependent relative phase of the two-color field. We also investigate the role of the Gouy phase shift on terahertz generation from two-color laser-induced plasma. The result is of critical importance for phase-dependent applications of two-color laser-field, including high-order harmonic and terahertz generation.


Applied Physics Letters | 2016

Enhancement of terahertz radiation by using circularly polarized two-color laser fields

Chao Meng; Wenbo Chen; Xiaowei Wang; Zhihui Lü; Yindong Huang; Jinlei Liu; Dongwen Zhang; Zengxiu Zhao; Jianmin Yuan

Terahertz radiation from tunneling ionization of gaseous atoms and molecules in the two-color laser fields with various polarizations has been investigated. We experimentally demonstrate that the efficiency of terahertz emission in the circularly polarized laser fields with the same helicity is 5 times higher than that with linearly polarized two-color femtosecond pulses in high laser intensity. By solving time-dependent Schrodinger equation, this enhancement is well explained based on the analysis of electron tunneling ionization and subsequent dynamics.


Journal of Physics B | 2016

High-harmonic and terahertz wave spectroscopy (HATS) for aligned molecules

Yindong Huang; Chao Meng; Jing Zhao; Xiaowei Wang; Zhihui Lü; Dongwen Zhang; Jianmin Yuan; Zengxiu Zhao

We present the experimental and theoretical details of our recent published letter [Phys. Rev. Lett. 115. 123002] on synchronized high-harmonic and terahertz-wave spectroscopy (HATS) from nonadiabatically aligned nitrogen molecules in dual-color laser fields. Associating the alignment-angle dependent terahertz wave generation with the synchronizing high-harmonic signal, the angular differential photoionization cross section (PICS) for molecules can be reconstructed, and the minima of the angle on PICS show great convergence between the theoretical predictions and the experimental deduced results. We also show the optimal relative phase between the dual-color laser fields for terahertz wave generation dose not change with the alignment angle at a precision of


Physics of Plasmas | 2017

Filament characterization via resonance absorption of terahertz wave

Zhigang Zheng; Yindong Huang; Quan Guo; Chao Meng; Zhihui Lü; Xiaowei Wang; Jing Zhao; Congsen Meng; Dongwen Zhang; Jianmin Yuan; Zengxiu Zhao

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Physical Review A | 2017

Spatial coherence in high-order-harmonic generation from periodic solid structures

Lu Liu; Jing Zhao; Wenpu Dong; Jinlei Liu; Yindong Huang; Zengxiu Zhao

attoseconds. This all-optical method provides an alternative for investigating molecular structures and dynamics.


The 9th International Symposium on Ultrafast Phenomena and Terahertz Waves | 2018

Highly Efficient Terahertz Generation in a Circularly Polarized Two-Color Laser Field

Chao Meng; yanyun tu; Quan Guo; Yindong Huang; Zhihui Lü; Xiaowei Wang; Congsen Meng; Dongwen Zhang; Zengxiu Zhao; Jianmin Yuan

In this work, we characterize the transmission properties of the focusing-laser-induced filament by using terahertz (THz) time domain spectroscopy. Significant resonance absorption of the THz wave is identified, which is attributed to the dynamic screening of the ionized electrons. The polarization and intensity of the filament-generated pulse have been varied to study their influences on the resonance absorption. Our results suggest that the electron density of the filament can be determined by fitting the phase shifts and absorption properties around the absorption. This method provides not only an alternative to the plasma diagnostics with plasma frequency at the THz range, but also a supplement to the existing generation theory of THz waves from plasma.


The 9th International Symposium on Ultrafast Phenomena and Terahertz Waves | 2018

Enhanced rotational absorption of polar molecule-formed plasma at THz frequency

Yindong Huang; Quan Guo; Ziyi Zhang; Jing Zhao; Jianmin Yuan; Zengxiu Zhao

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Zengxiu Zhao

National University of Defense Technology

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Jianmin Yuan

National University of Defense Technology

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Chao Meng

National University of Defense Technology

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Dongwen Zhang

National University of Defense Technology

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Xiaowei Wang

National University of Defense Technology

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Jing Zhao

National University of Defense Technology

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Wenbo Chen

National University of Defense Technology

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Zhihui Lü

National University of Defense Technology

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Zhihui Lv

National University of Defense Technology

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Quan Guo

National University of Defense Technology

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