Interaction of Gating Electric Pulse's Width and Amplitude on Temporal Resolution of Soft x-ray Picroseconds Framing Camera Based on Gated Microchannel Plate
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Interaction of Gating Electric Pulse's Width and Amplitude on Temporal Resolution of Soft x-ray Picroseconds Framing Camera Based on Gated Microchannel Plate
YANG Wen-zheng, BAI Yong-lin, LIU Bai-yu, et al. Interaction of Gating Electric Pulse's Width and Amplitude on Temporal Resolution of Soft x-ray Picroseconds Framing Camera Based on Gated Microchannel Plate[J]. Acta Electronica Sinica, 2009, 37(3): 603-607.
DOI:
YANG Wen-zheng, BAI Yong-lin, LIU Bai-yu, et al. Interaction of Gating Electric Pulse's Width and Amplitude on Temporal Resolution of Soft x-ray Picroseconds Framing Camera Based on Gated Microchannel Plate[J]. Acta Electronica Sinica, 2009, 37(3): 603-607.DOI:
Interaction of Gating Electric Pulse's Width and Amplitude on Temporal Resolution of Soft x-ray Picroseconds Framing Camera Based on Gated Microchannel Plate
The soft X-ray picosecond framing camera based on the gated microchannel plate (MCP-XPFC) is a type of ultra-fast diagnostic tool that applied widely for ICF and plasma researches.By using the uniform design
a temporal-resolved regression equation of MCP-XPFC was presented.The analytic emphasis is the interaction of the gating electric pulse's width and amplitude on the temporal resolution.The temporal resolution of camera was computed by the gating theoretic model and the regression equation respectively
and measured by femtosecond laser system on the base of two groups parameters
the gating electric pulses applied on the micro-strip lines of the MCP-XPFC with
V1(t)
(250ps
1200V) and
V2(t)
(170ps
1400V).At last
the theoretic and experimental error was analyzed.The optimized voltage range are 800~1200V for electric pulse of 250 ps and 1100~1200V for electric pulse of 170ps.
Design and Application of Large Current Pulse Generator
Uniform Design Based Multi-Objective Adaptive Genetic Algorithm and its Application in Evolutionary Design of Analog Circuits
A New Evolutionary Algorithm for Unconstrained Nonlinear
Related Author
CAI Hou-zhi
NIU Li-hong
LIU Jin-yuan
WANG Dong
HUANG Jun-kun
LIN Kai-xuan
LUO Qiu-yan
CHEN Jia-jie
Related Institution
Key Laboratory of Optoelectronic Devices and Systems of Minitry of Education and Guangdong Province, College of Physics and Optoelectronic Engineering, Shenzhen University
School of Electronic Engineering, Xidian University
Department of Applied Mathematics,Xidian University
School of Electronic EngineeringXidian UniversityXi'anShaanxi 710071China
Department of Applied MathematicsXidian UniversityXi'anShaanxi 710071China