论文标题
稀有RI存储环的静电飞机检测器的开发和操作
Development and operation of an electrostatic time-of-flight detector for the Rare RI storage Ring
论文作者
论文摘要
已经开发了一个名为E-MCP的飞行时间检测器,用于快速诊断循环梁和Riken稀有环界质谱的时机测量。 E-MCP检测器由转换箔,电网和微通道板组成。当重离子击中时,二级电子将从箔的表面释放。通过静电电势将电子加速和偏转90 $^\ Circ $向微通道板。将薄薄的碳箔和薄薄的铝涂层箔用作转化箔。我们获得了$^{84} $ kr梁的69(1)PS和43(1)PS(标准偏差)的时间分辨率分别为170 meV/u时,分别使用碳和铝涂层的薄膜箔。对于两种箔纸,获得了约90%的检测效率。配备了碳箔的E-MCP检测器安装在稀有环环内,以确认在$^{78} $ ge左右的质量测量的粒子循环中。清楚地观察到来自循环离子的定期时间信号。获得了$^{78} $ ge,$^{77} $ ga和$^{76} $ Zn的革命时间。结果证实了稀有RI环内短寿命核的成功循环。
An electrostatic time-of-flight detector named E-MCP has been developed for quick diagnostics of circulating beam and timing measurement in mass spectrometry at the Rare-RI Ring in RIKEN. The E-MCP detector consists of a conversion foil, potential grids, and a microchannel plate. Secondary electrons are released from the surface of the foil when a heavy ion hits it. The electrons are accelerated and deflected by 90$^\circ$ toward the microchannel plate by electrostatic potentials. A thin carbon foil and a thin aluminum-coated mylar foil were used as conversion foils. We obtained time resolutions of 69(1) ps and 43(1) ps (standard deviation) for a $^{84}$Kr beam at an energy of 170 MeV/u when using the carbon and the aluminum-coated mylar foils, respectively. A detection efficiency of approximately 90% was obtained for both foils. The E-MCP detector equipped with the carbon foil was installed inside the Rare-RI Ring to confirm particle circulation within a demonstration experiment on mass measurements of nuclei around $^{78}$Ge produced by in-flight fission of uranium beam at the RI Beam Factory in RIKEN. Periodic time signals from circulating ions were clearly observed. Revolution times for $^{78}$Ge, $^{77}$Ga, and $^{76}$Zn were obtained. The results confirmed successful circulation of the short-lived nuclei inside the Rare-RI Ring.