研究目的
Investigating the progress on the 1 PW/0.1 Hz laser beamline of Shanghai Superintense Ultrafast Laser Facility (SULF) and its characteristics for laser–matter interactions.
研究成果
The SULF-1 PW beamline demonstrates desirable characteristics for laser–matter interactions with its moderate repetition rate and good stability. Future works will focus on improving pulse spatial–temporal quality.
研究不足
The low efficiency caused by energy loss in the large-aperture Ti:sapphire crystal and the need for further improvement in pulse spatial–temporal quality.
1:Experimental Design and Method Selection:
The SULF-1 PW laser beamline is based on the double chirped pulse ampli?cation (CPA) scheme.
2:Sample Selection and Data Sources:
Laser pulses are generated and measured within the facility.
3:List of Experimental Equipment and Materials:
Includes Ti:sapphire CPA laser, energy meter, spectrometer, CCD, and others.
4:Experimental Procedures and Operational Workflow:
Detailed steps from pulse generation to compression and measurement.
5:Data Analysis Methods:
Measurement of energy fluctuation, pulse duration, contrast ratio, and focused peak intensity.
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Ti:sapphire CPA laser
Astrella
Coherent
Used as the first CPA stage to deliver sub-40-fs pulses with 7 mJ energy at 1 kHz repetition rate.
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spectrometer
USB2000+
Ocean Optics
Used to measure the evolution of the spectra in the amplifier chain.
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energy meter
QE95
Gentec-EO
Used to measure the output energy of the Final Amp.
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CCD
BeamGage
Spiricon
Used to measure the beam profile of the output laser after the Final Amp.
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