Floyd Emma, Gumbrell Edward T, Fyrth Jim, Luis James D, Skidmore Jonathan W, Patankar Siddharth, Giltrap Samuel, Smith Roland
AWE Aldermaston, Berkshire, RG7 4PR, United Kingdom.
Imperial College London, Prince Consort Rd, SW7 2BB, United Kingdom.
Rev Sci Instrum. 2016 Nov;87(11):11E546. doi: 10.1063/1.4962036.
A streaked pyrometer has been designed to measure the temperature of ≈100 μm diameter heated targets in the warm dense matter region. The diagnostic has picosecond time resolution. Spatial resolution is limited by the streak camera to 4 μm in one dimension; the imaging system has superior resolution of 1 μm. High light collection efficiency means that the diagnostic can transmit a measurable quantity of thermal emission at temperatures as low as 1 eV to the detector. This is achieved through the use of an f/1.4 objective, and a minimum number of reflecting and refracting surfaces to relay the image over 8 m with no vignetting over a 0.4 mm field of view with 12.5× magnification. All the system optics are highly corrected, to allow imaging with minimal aberrations over a broad spectral range. The detector is a highly sensitive Axis Photonique streak camera with a P820PSU streak tube. For the first time, two of these cameras have been absolutely calibrated at 1 ns and 2 ns sweep speeds under full operational conditions and over 8 spectral bands between 425 nm and 650 nm using a high-stability picosecond white light source. Over this range the cameras had a response which varied between 47 ± 8 and 14 ± 4 photons/count. The calibration of the optical imaging system makes absolute temperature measurements possible. Color temperature measurements are also possible due to the wide spectral range over which the system is calibrated; two different spectral bands can be imaged onto different parts of the photocathode of the same streak camera.
一种条纹高温计已被设计用于测量温稠密物质区域中直径约100μm的加热目标的温度。该诊断设备具有皮秒级的时间分辨率。空间分辨率在一维上受条纹相机限制为4μm;成像系统具有1μm的卓越分辨率。高光收集效率意味着该诊断设备能够将低至1eV温度下的可测量热发射量传输到探测器。这是通过使用f/1.4物镜以及最少数量的反射和折射表面来实现的,以便在8m的距离上中继图像,在0.(此处原文似乎有误,推测可能是0.4mm)mm视场、12.5倍放大率下无渐晕现象。所有系统光学元件都经过高度校正,以允许在宽光谱范围内以最小像差进行成像。探测器是一台配备P820PSU条纹管的高灵敏度Axis Photonique条纹相机。首次使用高稳定性皮秒白光源在全工作条件下以及425nm至650nm之间的8个光谱波段上,对其中两台相机在1ns和2ns扫描速度下进行了绝对校准。在此范围内,相机的响应在47±8至14±4光子/计数之间变化。光学成像系统的校准使得绝对温度测量成为可能。由于系统校准的光谱范围很宽,色温测量也成为可能;两个不同的光谱波段可以成像到同一台条纹相机光电阴极的不同部分上。