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Development of Ion Beam Nuclear Transmutation Doping (IBNTD) for Novel Electronics in Extreme Conditions

机译:极端条件下新型电子学的离子束核嬗变掺杂(IBNTD)的发展

摘要

Development of IBNTD for electronics under extreme conditions.•We hope to create novel wide bandgap devices using Ion Beam Nuclear Transmutation Doping (IBNTD). These devices may be used as rugged high power switches, and high current/low noise amplifiers. Diamond in itself represents a “Holy Grail” for electrical applications due to its very high thermal conductivity and excellent electrical characteristics. •We also hope to develop devices that can convert the enormous energy from high-energy nuclear particles (α2+,β-,β+, γparticles) into useful electricity and thus harness the enormous energy still contained in “spent” nuclear fuel. Developing these direct energy conversion (DEC) devices would significantly reduce conversion inefficiencies. •To create a radiation-rugged devices that can withstand high particle beam fluxes (e.g. outer space, and nuclear engineering sensors). •Reference:“A novel method to dope diamond -Ion Beam Nuclear Transmutation Doping (IBNTD),” M.G. Pravica, N.A. Guardala and J.L. Price, Diamond and Related Materials, 18, pp. 846-849(2009) •US Patent7,795,120:“Doping wide band gap semiconductors using proton induced transmutation.”
机译:在极端条件下开发用于电子的IBNTD。•我们希望使用离子束核Nuclear变掺杂(IBNTD)创建新颖的宽带隙器件。这些设备可用作坚固的大功率开关和高电流/低噪声放大器。金刚石本身具有很高的导热性和出色的电气特性,因此在电气应用中本身就是“圣杯”。 •我们还希望开发能够将高能核粒子(α2+,β-,β+,γ粒子)的巨大能量转换成有用电的设备,从而利用“废”核燃料中仍然包含的巨大能量。开发这些直接能量转换(DEC)器件将大大降低转换效率。 •创建可以承受高粒子束通量的辐射坚固设备(例如,外太空和核工程传感器)。 •参考:“一种掺杂金刚石的新方法-离子束核Nuclear变掺杂(IBNTD)”,M.G。 Pravica,N.A. Guardala和J.L. Price,《钻石及相关材料》,第18卷,第846-849页(2009)•美国专利7,795,120:“使用质子诱导的Do变对宽带隙半导体进行掺杂”。

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