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Methods for Detecting Events in Double-Phase Argon Chambers

机译:双相氩气室中事件的检测方法

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Multichannel wire gas electron multipliers in combination with pin anodes are proposed for detection of events in the gas phase of a double-phase argon chamber. Hydrogen with a concentration of 10 vol % is added to argon to eliminate feedbacks by photons emitted by excited argon molecules in avalanche development processes while detecting events in the argon gas. A maximum electron multiplication coefficient of ~300 has been obtained for the multichannel wire gas electron multipliers with a 1-mm gap used to detect α particles in the Ar + 10% H_2 mixture at a pressure of 1 atm (abs.). When a pin anode is used, the maximum electron multiplication factor is ~2.5 × 10~5 for α particles and 3 × 10~6 for β particles (~(63)Ni). It has been experimentally shown that adding H_2 with a concentration of 100 ppm to liquid argon has no effect on the singlet component of the scintillation signal in the liquid argon and reduces the emission efficiency relative to the pure argon gas phase only slightly (by 20%).
机译:提出了与针状阳极结合的多通道金属丝气体电子倍增器,用于检测双相氩室气相中的事件。将浓度为10 vol%的氢气添加到氩气中,以消除雪崩显影过程中受激氩分子发射的光子所产生的反馈,同时检测氩气中的事件。对于间隙为1mm的多通道金属丝气体电子倍增器,最大电子倍增系数为〜300,该倍增系数用于检测压力为1 atm(绝对)的Ar + 10%H_2混合物中的α粒子。使用针形阳极时,α粒子(〜(63)Ni)的最大电子倍增因子约为2.5×10〜5,β粒子为3×10〜6。实验表明,向液态氩中添加浓度为100 ppm的H_2对液态氩中闪烁信号的单重态组分没有影响,相对于纯氩气相而言,发射效率仅略微降低(降低20% )。

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