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Free-surface velocity measurements of opaque materials in laser-driven shock-wave experiments using photonic Doppler velocimetry

机译:光子多普勒速度激光驱动冲击波实验中不透明材料的自由表面速度测量

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摘要

We present a novel photonic Doppler velocimetry(PDV)design for laser-driven shock-wave experiments.This PDV design is intended to provide the capability of measuring the free-surface velocity of shocked opaque materials in the terapascal range.We present measurements of the free-surface velocity of gold for as long as∼2 ns from the shock breakout,at pressures of up to∼7 Mbar and a free-surface velocity of 7.3 km/s with an error of∼1.5%.Such laboratory pressure conditions are achieved predominantly at high-intensity laser facilities where the only velocity diagnostic is usually line-imaging velocity interferometry for any reflector.However,that diagnostic is limited by the lower dynamic range of the streak camera(at a temporal resolution relevant to laser shock experiments)to measure the free-surface velocity of opaque materials up to pressures of only∼1 Mbar.We expect the proposed PDV design to allow the free-surface velocity of opaque materials to be measured at much higher pressures.

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  • 来源
    《极端条件下的物质与辐射(英文)》 |2021年第004期|P.43-50|共8页
  • 作者单位

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

    Applied Physics Division Soreq NRC Yavne Israel Note:This paper is part of the Special Issue on Matter in Extreme States Created by Laser.;

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  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 流体力学;
  • 关键词

    shock; wave; interferometry;

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