activity
20172026
most citedNeutral Bremsstrahlung emission in xenon unveiled

27 citations · 81 across the 16 of their papers we have counts for

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physics.ins-det2026

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

S. R. Soleti, S. Torelli, G. Martínez-Lema +110

Wavelength-shifting (WLS) techniques enable particle detectors based on noble gases, whose scintillation light is predominantly emitted in the vacuum-ultraviolet. We investigate WL…

physics.ins-det2025

The NEXT-100 Detector

NEXT Collaboration, C. Adams, H. Almazán +114

The NEXT collaboration is dedicated to the study of double beta decays of Xe using a high-pressure gas electroluminescent time projection chamber. This advanced technology…

physics.ins-det2025

Performance of an Optical TPC Geant4 Simulation with Opticks GPU-Accelerated Photon Propagation

NEXT Collaboration, I. Parmaksiz, K. Mistry +113

We investigate the performance of Opticks, a NVIDIA OptiX API 7.5 GPU-accelerated photon propagation tool compared with a single-threaded Geant4 simulation. We compare the simulati…

physics.ins-det2025

Ion Transport on Phased Radiofrequency Carpets in Xenon Gas

E. Dey, B. J. P. Jones, Y. Mei +7

We present the design and performance of a four-phased radiofrequency (RF) carpet system for ion transport in high-pressure xenon gas. The RF carpet, designed with a 160 m pitch…

physics.ins-det202227 cited

Neutral Bremsstrahlung emission in xenon unveiled

C. A. O. Henriques, P. Amedo, J. M. R. Teixeira +90

We present evidence of non-excimer-based secondary scintillation in gaseous xenon, obtained using both the NEXT-White TPC and a dedicated setup. Detailed comparison with first-prin…

physics.ins-det2021

The Dynamics of Ions on Phased Radio-frequency Carpets in High Pressure Gases and Application for Barium Tagging in Xenon Gas Time Projection Chambers

NEXT Collaboration, B. J. P. Jones, A. Raymond +107

Radio-frequency (RF) carpets with ultra-fine pitches are examined for ion transport in gases at atmospheric pressures and above. We develop new analytic and computational methods f…