Phase-modulated High Harmonic Generation
Phase-modulated High Harmonic Generation
批准号:
427979815
负责人:
Professor Dr. Giuseppe Sansone
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2019
资助国家:
德国
项目状态:
已结题
起止时间:
2018-12-31 至 2023-12-31
中文摘要
基于高功率飞秒激光脉冲产生的高次谐波(HHG)的极紫外(XUV)光源已成为原子分子物理和阿秒科学新方向的有益工具。尽管来自HHG的相应XUV脉冲很容易用于实验,但脉冲操作,如用于泵浦-探测实验的分割和延迟单元,或脉冲对的特定相位控制,在XUV中仍然具有挑战性。这就是为什么到目前为止还没有在XUV波长上进行相干(多维)光谱等复杂光谱技术的原因之一。此外,由于HHG源的低XUV光子通量,可以在电子和离子探测中开发丰富选择的气相靶的实验具有挑战性。在这个项目中,我们将在基于相位调制技术和高次谐波锁定检测的相干XUV光谱中产生XUV脉冲对方面取得新的突破。在这种方法中,只操纵红外驱动激光场,避免了对XUV脉冲的任何相位和延迟控制。该项目旨在论证其技术可行性,阐明其局限性,并进行表征XUV相位控制特性的初步实验。通过实验验证了该方法在不同方向、采用互补检测技术的适用性。一方面,我们将对原子束和分子束以及气体靶进行XUV波包干涉测量,揭示激发态的相干动力学。我们将使用光电子能谱和瞬时吸收作为XUV时间分辨实验中最常用的检测技术。另一方面,相位调制技术将作为一种提高阿秒拍频的灵敏度和选择性的新方法应用于双光子跃迁重建阿秒拍频(Rabbitt)的实验中,开启了高阶边带拍频结构的前瞻性实验
英文摘要
Extreme ultraviolet (XUV) light sources based on high harmonic generation (HHG) from high-power femtosecond laser pulses have become profitable tools for new directions in atomic and molecular physics, and attosecond science. Although from HHG corresponding XUV pulses are readily available for experiments, pulse manipulation such as split-and-delay units for pump-probe experiments, or specific phase-control of pulse pairs remain challenging in the XUV. This is one reason why sophisticated spectroscopic techniques such as coherent (multidimensional) spectroscopy have not been performed so far at XUV wavelengths. Moreover, experiments on gas-phase targets which can exploit rich options in electron and ion detection, are challenging because of the low XUV photon flux of HHG sources. In this project we will break new grounds in generating XUV pulse pairs for coherent XUV spectroscopy based on a phase modulation technique and higher harmonic lock-in detection. In this approach only the infrared driving laser field is manipulated avoiding any phase and delay control acting on the XUV pulses. The project aims at demonstrating its technical feasibility, elucidating its limitations and performing first experiments characterizing XUV phase control properties. Experiments are proposed to proof the applicability in different directions and using complementary detection techniques. On the one hand, XUV wave packet interferometry on atomic and molecular beams as well as gas targets will be performed revealing coherent dynamics of excited states. We will use both photoelectron spectroscopy as well as transient absorption as the most commonly used detection techniques in XUV time-resolved experiments. On the other hand, the phase modulation technique will be used as a new approach improving sensitivity and selectivity in experiments for the reconstruction of attosecond beating by two-photon transitions (RABBITT), opening prospective experiments on higher order sideband beat structures
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会议论文
Petahertz field reconstruction for the investigation of ultrafast electronic dynamics
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批准号:411022471
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项目类别:Priority Programmes
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资助金额:$0.0万
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财政年份:2018
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负责人:Professor Dr. Giuseppe Sansone
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依托单位:
Nonlinear spectroscopy and attosecond metrology by new generation XUV and X-ray sources
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批准号:429805582
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Professor Dr. Giuseppe Sansone
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依托单位:
Investigation of the continuum-continuum phase in attosecond time delays
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批准号:493861873
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Professor Dr. Giuseppe Sansone
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依托单位:
海外基金