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Review on plasmas in extraordinary media: plasmas in cryogenic conditions and plasmas in supercritical fluids

机译:非凡媒体中等离子体审查:超临界流体的低温条件和等离子体中的等离子体

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摘要

Plasma science and technology has enabled advances in very diverse fields: micro- and nanotechnology, chemical synthesis, materials fabrication and, more recently, biotechnology and medicine. While many of the currently employed plasma tools and technologies are very advanced, the types of plasmas used in micro- and nanofabrication pose certain limits, for example, in treating heat-sensitive materials in plasma biotechnology and plasma medicine. Moreover, many physical properties of plasmas encountered in nature, and especially outer space, i.e. very-low-temperature plasmas or plasmas that occur in high-density media, are not very well understood. The present review gives a short account of laboratory plasmas generated under 'extreme' conditions: at cryogenic temperatures and in supercritical fluids. The fundamental characteristics of these cryogenic plasmas and cryoplasmas, and plasmas in supercritical fluids, especially supercritical fluid plasmas, are presented with their main applications. The research on such exotic plasmas is expected to lead to further understanding of plasma physics and, at the same time, enable new applications in various technological fields.
机译:等离子科学和技术在非常多样化的领域实现了进步:微型和纳米技术,化学合成,材料制造,以及最近,生物技术和药物。虽然目前使用的等离子体工具和技术非常先进,但微型和纳米制造中使用的等离子体类型造成了一定的限制,例如,在血浆生物技术和血浆医学中处理热敏材料。此外,本质上遇到的等离子体的许多物理性质,特别是外太空,即高密度介质中出现的极低温度等离子体或等离子体,不太了解。本综述提供了在“极端”条件下产生的实验室等离子体的简短叙述:在低温温度和超临界流体。这些低临界等离子体和冷冻液的基本特征以及超临界流体中的等离子体,特别是超临界流体,特别是超临界流体等离子体。预计对这种异国情调的等离子体的研究会导致对等离子体物理的进一步了解,同时,在各种技术领域实现新的应用。

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