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首页> 外文期刊>International Journal of Heat and Mass Transfer >Silicon emissivity as a function of temperature
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Silicon emissivity as a function of temperature

机译:硅发射率作为温度的函数

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摘要

In this paper we present the temperature-dependent emissivity of a silicon sample, estimated from its cool-down curve in a constant low temperature environment ( ~ 82K). The emissivity value follow a linear dependency in the 120-260 K temperature range. This result is of great interest to the LIGO Voyager gravitational wave interferometer project since it would mean that no extra high thermal emissivity coating on the test masses would be required in order to cool them down to 123 K. The results presented here indicate that bulk silicon itself can have sufficient thermal emissivity in order to cool the 200 kg LIGO Voyager test masses only by radiation in a reasonable short amount of time (less than a week). However, it is still not clear if the natural emissivity of silicon will be sufficient to maintain the LIGO Voyager test masses at the desired temperature (123 K) while removing power absorbed by the test masses. With the present results, a black coating on the barrel surface of the test masses would be necessary if power in excess of 6 W is delivered. However, the agreement we found between the hemispherical emissivity obtained by a theory of semi-transparent Silicon and the obtained experimental results makes us believe that the LIGO Voyager test masses, because of their dimensions, will have effective emissivities around 0.7, which would be enough to remove about 8.6 W (7.5 W) for a shield at 60 K (80 K). This hypothesis may be confirmed in the near future with new measurements.
机译:本文介绍了硅样品的温度依赖性发射率,从其冷却曲线估计在恒定的低温环境(〜82K)中。发射率值遵循120-260K温度范围内的线性依赖性。这一结果对Ligo Voyager Gravitational波干涉仪项目非常感兴趣,因为它意味着需要在测试质量块上没有额外的高热发射率涂层,以便将其冷却至123k。此处呈现的结果表明散装硅本身可以具有足够的热发射率,以便仅通过辐射在合理的短的时间(不到一周)中冷却200kg利焦Voyager测试质量。然而,如果硅的天然发射率将足以将Ligo Voyager测试质量保持在所需温度(123 k)的同时,则尚不清楚,同时消除由测试质量吸收的功率。利用目前的结果,如果递送超过6W的功率,则需要在测试质量的桶表面上的黑色涂层。但是,我们发现通过半透明硅理论获得的半球发射率和获得的实验结果所获得的协议使我们认为Ligo Voyager测试群体因其尺寸而具有约0.7左右的有效的发出性。这是足够的以60 k(80 k)除以约8.6W(7.5W)的屏蔽。该假设可以在不久的将来确认新的测量。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第8期|119863.1-119863.9|共9页
  • 作者单位

    Divisao de Astrofisica Institute National de Pesquisas Espaciais Sao Jose dos Campos SP 12227-010 Brasil;

    LIGO Laboratory California Institute of Technology Pasadena CA 91125 USA;

    Divisao de Astrofisica Institute National de Pesquisas Espaciais Sao Jose dos Campos SP 12227-010 Brasil;

    LIGO Laboratory California Institute of Technology Pasadena CA 91125 USA;

    LIGO Laboratory California Institute of Technology Pasadena CA 91125 USA;

    Divisao de Astrofisica Institute National de Pesquisas Espaciais Sao Jose dos Campos SP 12227-010 Brasil;

    LIGO Laboratory California Institute of Technology Pasadena CA 91125 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LIGO; Silicon; Thermal emissivity; Gravitational waves;

    机译:Ligo;硅;热发射率;引力波;

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