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High efficiency GHz laser processing with long bursts
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作者 Eric Audouard Eric Mottay 《International Journal of Extreme Manufacturing》 SCIE EI CAS CSCD 2023年第1期202-210,共9页
Bursts of GHz repetition rate pulses involve more ablation mechanisms than single femtosecond pulses.Efficient ablation by GHz laser pulses is a multi-step process,consisting of a first thermal incubation phase,follow... Bursts of GHz repetition rate pulses involve more ablation mechanisms than single femtosecond pulses.Efficient ablation by GHz laser pulses is a multi-step process,consisting of a first thermal incubation phase,followed by a highly efficient ablation phase.GHz ablation therefore combines thermal and non-thermal ablation mechanisms.With an optimal choice of the burst duration,the ablation efficiency can be highly enhanced.Long bursts,comprising tens of pulses to hundreds of pulses,are needed to take full advantage of the increase in ablation efficiency. 展开更多
关键词 femtosecond laser temporal pulses shaping GHz bursts femtosecond processing
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Nonlinear ionization control by temporally shaped fs+ps double-pulse sequence on ZnO
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作者 尹唯一 宋娟 +3 位作者 任翔宇 姚倩 林贤 戴晔 《Chinese Optics Letters》 SCIE EI CAS CSCD 2023年第2期71-75,共5页
We designed a femtosecond(fs)+picosecond(ps)double-pulse sequence by using a Mach-Zehnder-like apparatus to split a single 120 fs pulse into two sub-pulses,and one of them was stretched to a width of 2 ps by a four-pa... We designed a femtosecond(fs)+picosecond(ps)double-pulse sequence by using a Mach-Zehnder-like apparatus to split a single 120 fs pulse into two sub-pulses,and one of them was stretched to a width of 2 ps by a four-pass grating system.Through observing the ripples induced on the ZnO surface,we found the ionization rate appeared to be higher for the sequence in which the fs pulse arrived first.The electron rate equation was used to calculate changes of electron density distribution for the sequences with different delay times.We suggest that using a temporally shaped fs+ps pulse sequence can achieve nonlinear ionization control and influence the induced ripples. 展开更多
关键词 ZNO ultrafast double-pulse sequence RIPPLE temporal shaping nonlinear ionization
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On-Demand Photon Storage and Retrieval with a Solid-State Photon Molecule at Room Temperature
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作者 Ze-Yu Luo Tong Zhang +9 位作者 Yi-Teng Ye Yun-Fei Wang Cheng-Cheng Yu Zhi-Cong Luo Yi-Jie Zhang Mo-Chi Xu Barry CSanders Hui Wang Chao-Yang Lu Jian-Wei Pan 《Electromagnetic Science》 2024年第3期42-51,共10页
Deterministically achieving on-chip photon storage and retrieval is a fundamental challenge for integrated photonics.Moreover,this requirement is increasingly urgent as photon storage and retrieval is crucial to reali... Deterministically achieving on-chip photon storage and retrieval is a fundamental challenge for integrated photonics.Moreover,this requirement is increasingly urgent as photon storage and retrieval is crucial to realize truly scalable room-temperature quantum computing.However,most of existing quantum memories integrated on chips must either work at cryogenic temperature or else are strongly coupled with the environment,which hugely reduces the efficiency.Here,we propose an on-chip room-temperature quantum memory comprising three coupled microcavities,which presents an ideal dark state decoupled by a waveguide,thereby allowing on-demand photon storage and retrieval with high efficiency and high fidelity simultaneously.Furthermore,we demonstrate that the single-photon temporal duration can be increased or decreased by a factor of 10^(3),thereby enabling many crucial quantum applications.Our error-robust approach highlights the potential for a solid-state photonic molecule for use as on-chip quantum memory and for optical quantum computing. 展开更多
关键词 Photon storage and retrieval On-chip quantum memory Photon temporal shaping
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Recent progresses on optical arbitrary waveform generation 被引量:2
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作者 Ming LI Jose AZANA +1 位作者 Ninghua ZHU Jianping YAO 《Frontiers of Optoelectronics》 CSCD 2014年第3期359-375,共17页
This paper reviews recent progresses on optical arbitrary waveform generation (AWG) techniques, which could be used to break the speed and bandwidth bottle- necks of electronics technologies for waveform generation.... This paper reviews recent progresses on optical arbitrary waveform generation (AWG) techniques, which could be used to break the speed and bandwidth bottle- necks of electronics technologies for waveform generation. The main enabling techniques for optically generating optical and microwave waveforms are introduced and reviewed in this paper, such as wavelength-to-time mapping techniques, space-to-time mapping techniques, temporal pulse shaping (TPS) system, optoelectronics oscillator (OEO), programmable optical filters, optical differentiator and integrator and versatile electro-optic modulation implementations. The main advantages and challenges of these optical AWG techniques are also discussed. 展开更多
关键词 optical arbitrary waveform generation (AWG) wavelength-to-time mapping optoelectronics oscillator (OEO) temporal pulse shaping (TPS) system optical differentiator and integrator electro-optic modulation
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