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Carrier envelope phase effect on the spatial distribution of high-order harmonic generation in asymmetric molecule 被引量:1
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作者 Jun Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第5期135-139,共5页
The spatial distribution in high-order harmonic generation(HHG) from the asymmetric diatomic molecule He H^(2+) is investigated by numerically solving the non-Born–Oppenheimer time-dependent Schr?dinger equatio... The spatial distribution in high-order harmonic generation(HHG) from the asymmetric diatomic molecule He H^(2+) is investigated by numerically solving the non-Born–Oppenheimer time-dependent Schr?dinger equation(TDSE). The spatial distribution of the HHG spectra shows that there is little contribution in HHG around the geometric center of two nuclei(z = 1.17 a.u.) and the equilibrium internuclear position of the H nucleus(z = 3.11 a.u.). We demonstrate the carrier envelope phase(CEP) effect on the spatial distribution of HHG in a few-cycle laser pulse. The HHG process is investigated by the time evolution of the electronic density distribution. The time–frequency analysis of HHG from two nuclei in HeH^(2+) is presented to further explain the underlying physical mechanism. 展开更多
关键词 high-order harmonic generation spatial distribution asymmetric molecule carrier envelope phase
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Relative carrier-envelope phase dependence of resonant propagation of two-colour femtosecond pulses in V-type atomic medium 被引量:1
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作者 谭霞 王振东 +1 位作者 王蕾 樊锡君 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第6期349-355,共7页
Using numerical solution of the full Maxwell-Bloch equations, which is obtained by the finite-difference time-domain method and the iterative predictor-orrector method, we investigate the modulation effect of relative... Using numerical solution of the full Maxwell-Bloch equations, which is obtained by the finite-difference time-domain method and the iterative predictor-orrector method, we investigate the modulation effect of relative carrierenvelope phase (hereinafter referred to as the relative phase) on resonant propagation of two-colour femtosecond ultrashort laser pulses in a V-type three-level atomic medium. It is found that the pulse splitting occurs for a smaller value of relative phase; when the value of relative phase increases to a certain value, only the variation of pulse shape is present and the pulse splitting does not occur any more; moreover, when the value of relative phase is smaller, the pulse group velocity is larger. The relative phase also has an obvious effect on population and spectral property. Different population transfers can be realized by adjusting the value of relative phase. Generally speaking, for the pulses with smaller areas their spectral strengths and frequency ranges decrease obviously with the value of relative phase increasing; for the pulses with larger areas, with value of the relative phase increasing, their spectral strengths decrease remarkably but the relative strengths of the higher frequency components increase significantly, while the spectral frequency range is not varied evidently. 展开更多
关键词 two-colour ultrashort pulses relative carrier envelope phase resonant propagation V- type three-level atomic medium
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Femtosecond laser user facility for application research on ultrafast science 被引量:1
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作者 Zhaohua Wang Shaobo Fang +3 位作者 Hao Teng Hainian Han Xinkui He Zhiyi Wei 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第7期66-71,共6页
The advent of chirped-pulse amplification (CPA) has greatly advanced the field of ultrafast and ultra-intense laser technology. CPA has become an indispensable platform for multidisciplinary research, such as physic... The advent of chirped-pulse amplification (CPA) has greatly advanced the field of ultrafast and ultra-intense laser technology. CPA has become an indispensable platform for multidisciplinary research, such as physics, chemistry, life sciences, and precision metrology. The femtosecond laser facility at the Synergic Extreme Condition User Facility (SECUF) is a comprehensive experimental platform with an advanced femtosecond laser source for ultrafast scientific research. It will provide an ultrafast scientific research system having a few-cycle pulse duration, wide spectral range, high energy, and high repetition rate for multipurpose applications. 展开更多
关键词 FEMTOSECOND carrier envelope phase (CEP) chirped-pulse amplification (CPA) ultrafast spec-troscopy optical parametric amplifier (OPA)
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Time-energy properties of an attosecond extreme ultra-violet pulse
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作者 葛愉成 何海萍 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第10期217-224,共8页
The time-energy properties of high-order harmonic generation (HHG) are calculated for a linearly polarized 7- fs laser pulse with different carrier-envelope phases (CEPs). The quantum trajectory paths that contrib... The time-energy properties of high-order harmonic generation (HHG) are calculated for a linearly polarized 7- fs laser pulse with different carrier-envelope phases (CEPs). The quantum trajectory paths that contribute to an as (1 as=10^-18 s) pulse in HHG are identified. The laser-duration dependence and the CEP dependence of HHG energy property are investigated. The study shows that an as extreme ultra-violet (XUV) pulse can be selected from HHG spectrum near cut-off energy with a bandpass optical filter. The theoretical prediction of the pulse duration is proportional to bandwidth. Analysis suggests that a measured narrowband as XUV pulse may consist of instantaneous shorter pulses each dependent on laser pulse duration, intensity, and CEP. These information can be used as references for producing, selecting, improving and manipulating (timing) as pulses. 展开更多
关键词 high harmonic generation energy properties attosecond pulse carrier envelope phase
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A proposed approach for detecting terahertz pulses by using double few-cycle laser pulses with opposite carrier envelope phases
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作者 Kejia Wang Xinyang Gu +3 位作者 Zhenwei Zhang Zhengang Yang Jinsong Liu and Shenglie Wang 《Chinese Optics Letters》 SCIE EI CAS CSCD 2018年第9期1-3,共3页
Previous research shows that few-cycle laser(FCL) pulses with low energy and without a bias field can be used to coherently detect terahertz(THz) pulses. As we know, it is very difficult to stabilize the carrier e... Previous research shows that few-cycle laser(FCL) pulses with low energy and without a bias field can be used to coherently detect terahertz(THz) pulses. As we know, it is very difficult to stabilize the carrier envelope phase(CEP) of FCL pulses, i.e., there are some random fluctuations for the CEP. Here we theoretically investigate the influence of such instability on the accuracy of THz detection. Our results show that although there is an optimum CEP for THz detection, the fluctuations of the CEP will lead to terrible thorns on the detected THz waveform. In order to solve this problem, we propose an approach using two few-cycle laser pulses with opposite CEPs, i.e., their CEPs are differed by π. 展开更多
关键词 THz A proposed approach for detecting terahertz pulses by using double few-cycle laser pulses with opposite carrier envelope phases cycle
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Three-dimensional numerical investigations of the laser-beam interactions in an undulator
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作者 邓海啸 林唐宇 +2 位作者 颜俊 王东 戴志敏 《Chinese Physics C》 SCIE CAS CSCD 2011年第3期308-312,共5页
Laser-beam interaction in an undulator is commonly suggested in the development of free electron laser (FEL) schemes. In this paper, a three-dimensional algorithm is developed to assist in laser-beam interaction sim... Laser-beam interaction in an undulator is commonly suggested in the development of free electron laser (FEL) schemes. In this paper, a three-dimensional algorithm is developed to assist in laser-beam interaction simulation in an undulator, which is built on the basis of the fundamentals of electrodynamics, i.e. the electron’s behavior is determined by the magnetic field and the laser electric field in the time domain. On the basis of the algorithm, the detuning effect in a laser heater, the carrier envelope phase effect of a few-cycle laser in attosecond X-ray FEL schemes and output wavelength tuning in a high gain harmonic generation FEL are numerically discussed. 展开更多
关键词 DETUNING laser-heater few-cycle laser carrier envelope phase
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