The development of gaseous detectors with solid photocathodes for low temperature
arXiv:physics/0403087 · doi:10.1016/j.nima.2004.07.182
Abstract
There are several applications and fundamental research areas which require the detection of VUV light at cryogenic temperatures. For these applications we have developed and successfully tested special designs of gaseous detectors with solid photocathodes able to operate at low temperatures: sealed gaseous detectors with MgF2 windows and windowless detectors. We have experimentally demonstrated, that both primary and secondary (due to the avalanche multiplication inside liquids) scintillation lights could be recorded by photosensitive gaseous detectors. The results of this work may allow one to significantly improve the operation of some noble liquid gas TPCs.
Presented at the X Vienna Conference on Instumentation, Vienna, February 2004
Cited by in corpus (12)
- Liquid noble gas detectors for low energy particle physics
- Advances in Gaseous Photomultipliers
- Advances in Cryogenic Avalanche Detectors
- New Developments and Future Perspectives of Gaseous Detectors
- On the operation of a Micropattern Gaseous UV-Photomultiplier in Liquid-Xenon
- Operation of MHSP multipliers in high pressure pure noble-gas
- Hybrid Multi Micropattern Gaseous Photomultiplier for detection of liquid-xenon scintillation
- A Study of the Operation of Especially Designed Photosensitive Gaseous Detectors at Cryogenic Temperatures
- MPGDs in Compton imaging with liquid-xenon
- GEMs with Double Layred Micropattern Electrodes and their Applications
- The Development of Sealed UV Sensitive Gaseous Detectors and their Applications
- Photosensitive Gaseous Detectors for Cryogenic Temperature Applications