论文标题
用于测量正电子歼灭诱导的电子的多站飞机光谱仪与多普勒偏移的歼灭伽玛光子一致
A multi-stop time-of-flight spectrometer for the measurement of positron annihilation-induced electrons in coincidence with the Doppler-shifted annihilation gamma photon
论文作者
论文摘要
在这里,我们描述了一个高级多功能,可变的正电子光束系统,能够测量由相关正电子的灭绝而导致的多普勒偏移的伽马光子的多个正电子诱导的电子的能量。使用数字飞行时间光谱仪的独特特性和高级正电子束系统可用的伽马光谱仪进行测量。这些测量结果导致了(i)使用高纯度GE检测器和微通道板的同时信号产生的正电子诱导的螺旋电子电子的第一个数字时间; (ii)多普勒 - 巴科省消灭伽玛的能量的二维阵列以及正电子通知诱导的螺旋螺旋电子或与歼灭伽玛光子相吻合的二次电子的飞行时间; (iii)由于撞击和(或)正电子的歼灭,多个次级电子的飞行光谱时间从双层石墨烯表面弹出。通过提取仅用1s碳电子的正电子歼灭而发出的伽马光子的多普勒 - 光谱光谱通过提取伽马光光子的多普勒宽光谱来证明了伽马电子重合光谱的新颖性。发现提取的多普勒宽度γ光谱的宽度与由于碳中1S电子的动量而导致的an灭伽马谱的预期扩展是一致的。
Here we describe an advanced multi functional, variable-energy positron beam system capable of measuring the energies of multiple positron-induced electrons in coincidence with the Doppler-shifted gamma photon resulting from the annihilation of the correlated positron. The measurements were carried out using the unique characteristics of the digital time-of-flight spectrometer and the gamma spectrometer available with the advanced positron beam system. These measurements have resulted in (i) the first digital time of flight spectrum of positron annihilation-induced Auger electrons generated using coincident signals from a high-purity Ge detector and a micro-channel plate; (ii) a two-dimensional array of the energy of Doppler-broadened annihilation gamma and the time of flight of positron-annihilation induced Auger electrons or secondary electrons measured in coincidence with the annihilation gamma photon; and (iii) the time of flight spectra of multiple secondary electrons ejected from a bilayer graphene surface as a result of the impact and(or) annihilation of positrons. The novelty of the gamma electron coincidence spectroscopy has been demonstrated by extracting the Doppler-broadened spectrum of gamma photons emitted due to the annihilation of positrons exclusively with 1s electrons of carbon. The width of the extracted Doppler-broadened gamma spectrum has been found to be consistent with the expected broadening of the annihilation gamma spectrum due to the momentum of the 1s electrons in carbon.