MbrlCatalogueTitleDetail

Do you wish to reserve the book?
Detection of scintillation light in noble gases with wavelength-shifting optical fibers
Detection of scintillation light in noble gases with wavelength-shifting optical fibers
Hey, we have placed the reservation for you!
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Detection of scintillation light in noble gases with wavelength-shifting optical fibers
Oops! Something went wrong.
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Title added to your shelf!
Title added to your shelf!
View what I already have on My Shelf.
Oops! Something went wrong.
Oops! Something went wrong.
While trying to add the title to your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Detection of scintillation light in noble gases with wavelength-shifting optical fibers
Detection of scintillation light in noble gases with wavelength-shifting optical fibers

Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
How would you like to get it?
We have requested the book for you! Sorry the robot delivery is not available at the moment
We have requested the book for you!
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Detection of scintillation light in noble gases with wavelength-shifting optical fibers
Detection of scintillation light in noble gases with wavelength-shifting optical fibers
Paper

Detection of scintillation light in noble gases with wavelength-shifting optical fibers

2026
Request Book From Autostore and Choose the Collection Method
Overview
Wavelength-shifting (WLS) techniques enable particle detectors based on noble gases, whose scintillation light is predominantly emitted in the vacuum-ultraviolet. We investigate WLS fibers coated with tetraphenyl butadiene (TPB) for scintillation light detection in gaseous xenon and argon at pressures up to 8.5 bar, motivated by future high-pressure xenon time-projection chambers of the NEXT program. Two detector configurations are studied: an elongated high-pressure vessel with four PTFE panels equipped with WLS fibers read by temperature-stabilized SiPMs, and a compact box-shaped detector operated at 1 bar Xe with WLS fibers read out by PMTs. Both operate with continuous gas purification. The detector response is characterized using cosmic muons and alpha particles from a \\(^241\\)Am source. With the SiPM setup, we measure a light collection efficiency (LCE) of \\(1.18 0.01~(sta.)~^+0.07_-0.09~(sys.)~\\%\\) for xenon and \\(1.07 0.01~(sta.)~^+0.06_-0.08~(sys.)~\\%\\) for argon. With PMT readout, we measure a LCE of \\(0.45 0.01~(sta.) 0.05~(sys.)~\\%\\) in xenon, in agreement with the SiPM result once photon detection efficiency is accounted for. Average scintillation waveforms in xenon and argon are studied to assess the time structure of the emitted light. Cosmic-muon measurements yield a mean energy required to produce a scintillation photon \\(457~(sta.)~^+4_-5~(sys.)~eV\\) at 1.5 bar, in agreement with the literature. The results demonstrate that TPB-coated WLS fiber systems can reliably detect scintillation light in high-pressure gaseous noble detectors, with a LCE representing an upper limit for realistic large-scale TPCs, where additional photon losses from materials and fiber attenuation are expected.