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論文

Single-shot laser-driven neutron resonance spectroscopy for temperature profiling

Lan, Z.*; 有川 安信*; Mirfayzi, S. R.*; Morace, A.*; 早川 岳人*; 佐藤 博隆*; 加美山 隆*; Wei, T.*; 巽 湧太*; 小泉 光生; et al.

Nature Communications (Internet), 15, p.5365_1 - 5365_7, 2024/07

The temperature measurement of material inside of an object is one of the key technologies for control of dynamical processes. For this purpose, various techniques such as laser-based thermography and phase-contrast imaging thermography have been studied. However, it is, in principle, impossible to measure the temperature of an element inside of an object using these techniques. One of the possible solutions is measurements of Doppler brooding effect in neutron resonance absorption (NRA). Here we present a method to measure the temperature of an element or an isotope inside of an object using NRA with a single neutron pulse of approximately 100 ns width provided from a high-power laser. We demonstrate temperature measurements of a tantalum (Ta) metallic foil heated from the room temperature up to 617 K. Although the neutron energy resolution is fluctuated from shot to shot, we obtain the temperature dependence of resonance Doppler broadening using a reference of a silver (Ag) foil kept to the room temperature. A free gas model well reproduces the results. This method enables element(isotope)-sensitive thermometry to detect the instantaneous temperature rise in dynamical processes.

口頭

High-speed atomic thermometer using single shot of laser-driven neutron pulse

Lan, Z.*; 余語 覚文*; 早川 岳人*; Wei, T.*; 加美山 隆*; 佐藤 博隆*; 有川 安信*; Mirfayzi, R.*; 小泉 光生; 安部 勇輝*; et al.

no journal, , 

Neutron resonance diagnosis technology has been developed worldwide for over ten years. By employing neutron beams with high transmittance, it is possible to measure the resonance spectral of samples in the neutron beam-line. We developed a new approach to generate short pulse epithermal neutron beams using relativistic intensity laser for the neutron resonance spectral diagnosis, which is known as Laser-Driven Epithermal Neutron Source (LDENS). Benefit from highly focused laser, the LDENS can provide high temporal accuracy with a compact volume of the source. Therefore, the minimal change of neutron resonance peaks caused by Doppler broadening effect of atom temperature could be detected via single pulse of LDENS. In experiment, we measured resonance at 4.28eV of a 0,1mm Ta plate with serial temperature points (300K-600K) and another resonance at 5.18eV of an Ag plate was recorded as a reference of the neutron signal. The experimental data shows the feasibility of isotope-discriminating atomic thermometer using a single shot of LDENS. More results will be reported in the presentation.

口頭

Nuclear thermometer using single pulse of laser-driven neutron source

Lan, Z.*; Wei, T.*; 早川 岳人*; 加美山 隆*; 佐藤 博隆*; 有川 安信*; Mirfayzi, S. R.*; 小泉 光生; 安部 勇輝*; Morace, A.*; et al.

no journal, , 

A Laser-Driven Neutron Source (LDNS) is a novel neutron that provides neutron beam of ultra-short pulse duration and high flux. This technique would be useful for neutron resonance non-destructive diagnosis application. A demonstration experiment was carried out using an LDNS developed for the LFEX laser of Institute of Laser Engineering, Osaka University. A neutron resonance spectrum was observed with a single laser shot. The technique can be used as a "nuclear thermometer" because the resonance shape is broadened as a function of the sample material temperature.

口頭

Nuclear thermometer using single pulse of laser-driven neutron source

Lan, Z.*; 早川 岳人*; Wei, T.*; 加美山 隆*; 佐藤 博隆*; 有川 安信*; Mirfayzi, S. R.*; 小泉 光生; 安部 勇輝*; 森 隆人*; et al.

no journal, , 

As a new approach of neutron generation with the ultra-short pulse duration and high flux, a Laser-Driven Neutron Source (LDNS) has been studied. A demonstration experiment of neutron resonance spectroscopy using a LDNS has been performed using the petawatt laser LFEX at the Institute of Laser Engineering, Osaka University. A CD foil target was used for an high-density plasma generation. Neutrons were produced by the impact of the high energy ions on a boron converter. A high-density polyethylene surrounding the boron converter slowed down neutron energy to epithermal temperature. A single shot neutron resonance experiment was carried out at a neutron beam line of 1.8m. The neutron resonance peak at 4.28 eV of Ta was measured with different temperature.

口頭

レーザー駆動線源による中性子共鳴吸収III; シングルショット分析におけるサンプル温度依存性

余語 覚文*; Lan, Z.*; 有川 安信*; 早川 岳人*; Mirfayzi, S. R.*; Wei, T.*; 巽 湧太*; 佐藤 博隆*; 加美山 隆*; 小泉 光生

no journal, , 

高強度レーザーで加速した陽子・重陽子をBe等のコンバータで中性子に変換するレーザー駆動中性子源を開発しており、これまでにレーザー1ショットで発生した単一パルスの中性子で、中性子共鳴スペクトルの計測に成功している。本発表では、サンプルを300-600Kの範囲で昇温し、共鳴吸収ピークのドップラー広がりが温度の平方根に依存する結果を得たので報告する。

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