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Dense Plasma Formation by Carbon Thin Film Liner Compression

Dense Plasma Formation by Carbon Thin Film Liner Compression
通过碳薄膜内衬压缩形成致密等离子体
批准号:
62580002
负责人:
ISHII Shozo
金额:
$1.34万
依托单位国家:
日本
项目类别:
Grant-in-Aid for General Scientific Research (C)
财政年份:
1987
资助国家:
日本
项目状态:
已结题
起止时间:
1987 至 1988

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中文摘要
翻译
我们提出了碳薄膜在z -箍缩中的线性压缩方案,该方案对高强度脉冲x射线源和x射线激光器的应用是有效的。实验证明该原理是有效的。利用沉积在放电管壁表面的导电薄膜作为压缩衬垫的方法,克服了处理机械弱圆柱金属衬垫的技术困难。如果选择合适的制作薄膜的工艺,可以在连续泵送的放电容器中进行一系列的实验。由于衬垫是由任何变成薄膜的物质制成的,因此在软x射线的波长范围内可以得到各种各样的辐射光谱。对夹点动力学的数值模拟表明,传统的电容器组可以很容易地驱动碳薄膜衬垫。采用射频、交流或直流辉光、脉冲放电、电弧等离子体和真空气相沉积等几种方法对薄膜的最佳制备方法进行了研究。采用真空气相沉积法制备了均匀导电的薄膜。然而;膜沉积时间过长,导致碳膜衬垫压缩不成功。我们把碳改成铝作为衬里材料。采用真空气相沉积法在直径7cm的放电管管壁上形成铝薄膜衬垫。电容器(20kV,900J)放电驱动衬垫压缩。当电流达到最大70kA时,衬垫被压缩到轴上,观察到软x射线发射。
英文摘要
We proposed carbon thin film liner compression scheme in Z-pinches which is effective for the application of high intensity pulsed X-ray sources and X-ray lasers. The experiments proved the principle to be valid. The method of using a conductive thin film deposited on the surface of discharge tube wall as a compression liner can overcome the technical difficulties in handling mechanically weak oylindrical metal liners. If the process of making the thin film is properly chosen, a series of experiments can be done in the discharge vessel which is continuously pumped. Since the liner is made from anything which becomes thin film, a great variety of radiation spectra can be obtained in the wavelength range of soft X-ray. A numerical simulation on pinch dynamics shows that conventional capacitor banks can easily drives the carbon thin film liner. The optimum way of producing the thin film was examined by applying several methods, namely, RF, AC or DC glow, and pulsed discharge, arc plasma, and vacuum vapor deposition. Uniform and conductive thin films were produced by vacuum vapor deposition. However; the film deposition time was so long that the carbon film liner compression was unsuccessful. We changed carbon to aluminum as the liner material. Aluminum thin film liner is formed on the tube wall of a 7cm diameter discharge tube by vacuum vapor deposition. A capacitor (20kV,900J) discharge drives the liner compression. The liner is compressed to the axis when the current reaches its maximum of 70kA and the soft X-ray emission is observed.
期刊论文(18)
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会议论文
清水一弘: 電気学会研究資料. EP-89-7. 59-66 (1989)
Kazuhiro Shimizu:IEEJ 研究材料。EP-89-7(1989)。
DOI: --
发表时间:
期刊:
影响因子: --
作者: []
通讯作者:
Kwang Cheal Ko: Japanese Journal of Applied Physics. 27. 865-866 (1988)
Kwang Cheal Ko:日本应用物理学杂志。
DOI: --
发表时间:
期刊:
影响因子: --
作者: []
通讯作者:
福田昌弘: 電気学会研究会資料. EP-87-50. 69-78 (1987)
福田正弘:IEEJ 研究组材料。EP-87-50(1987)。
DOI: --
发表时间:
期刊:
影响因子: --
作者: []
通讯作者:
福田昌宏: 電気学会研究会資料. EP-87-50. 69-78 (1987)
福田正弘:IEEJ 研究组材料。EP-87-50(1987)。
DOI: --
发表时间:
期刊:
影响因子: --
作者: []
通讯作者:
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