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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Detection of heavy ions using Nb-based superconducting tunneljunction
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Detection of heavy ions using Nb-based superconducting tunneljunction

机译:使用基于Nb的超导隧道结检测重离子

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摘要

The superconducting tunnel junction (STJ) is one of the most promising devices to use as a fast detector for heavy ions. The energy deposited due to the passage of a heavy ion through an STJ forms a region called a hot spot, where the superconductivity of the region is broken. As a result, a reduction of the critical current (Ic) in the STJ occurs. If the bias current exceeds this reduced Ic, the output voltage from the STJ switches from 0 V to its gap voltage, which is recognizable as a signal due to the heavy ion passage. Nb-based STJs were fabricated for this heavy ion detector and an experiment was performed at the RIKEN Ring Cyclotron Facility to investigate the response to heavy ions. Instantaneous switching to the voltage state of the STJ in response to the decrease in Ic induced by a heavy ion beam was successfully observed by introducing 40Ar particles with a kinetic energy of 95 MeVucleon into the STJ
机译:超导隧道结(STJ)是用作重离子快速检测器的最有希望的设备之一。由于重离子通过STJ而沉积的能量形成了一个称为热点的区域,该区域的超导性被破坏了。结果,STJ中的临界电流(Ic)减小。如果偏置电流超过此减小的Ic,则来自STJ的输出电压将从0 V切换到其间隙电压,由于离子通过过多,该间隙电压可识别为信号。为该重离子检测器制造了基于Nb的STJ,并在RIKEN环形回旋加速器设施上进行了一项实验,以研究对重离子的响应。通过将具有95 MeV /核子动能的40Ar粒子引入STJ,成功观察到响应于重离子束引起的Ic的降低,瞬时切换到STJ的电压状态。

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