Demonstration of Event Position Reconstruction based on Diffusion in the NEXT-White Detector
Abstract
Noble element time projection chambers are a leading technology for rare event detection in physics, such as for dark matter and neutrinoless double beta decay searches. Time projection chambers typically assign event position in the drift direction using the relative timing of prompt scintillation and delayed charge collection signals, allowing for reconstruction of an absolute position in the drift direction. In this paper, alternate methods for assigning event drift distance via quantification of electron diffusion in a pure high pressure xenon gas time projection chamber are explored. Data from the NEXT-White detector demonstrate the ability to achieve good position assignment accuracy for both high- and low-energy events. Using point-like energy deposits from Kr calibration electron captures (keV), the position of origin of low-energy events is determined to cm precision with bias mm. A convolutional neural network approach is then used to quantify diffusion for longer tracks (E1.5MeV), yielding a precision of 3cm on the event barycenter. The precision achieved with these methods indicates the feasibility energy calibrations of better than 1% FWHM at Q in pure xenon, as well as the potential for event fiducialization in large future detectors using an alternate method that does not rely on primary scintillation.
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Cite
@article{arxiv.2311.03441,
title = {Demonstration of Event Position Reconstruction based on Diffusion in the NEXT-White Detector},
author = {J. Haefner and K. E. Navarro and R. Guenette and B. J. P. Jones and A. Tripathi and C. Adams and H. Almazán and V. Álvarez and B. Aparicio and A. I. Aranburu and L. Arazi and I. J. Arnquist and F. Auria-Luna and S. Ayet and C. D. R. Azevedo and K. Bailey and F. Ballester and M. del Barrio-Torregrosa and A. Bayo and J. M. BenllochRodríguez and F. I. G. M. Borges and A. Brodolin and N. Byrnes and S. Cárcel and J. V. Carrión and S. Cebrián and E. Church and L. Cid and C. A. N. Conde and T. Contreras and F. P. Cossío and E. Dey and G. Díaz and T. Dickel and M. Elorza and J. Escada and R. Esteve and R. Felkai and L. M. P. Fernandes and P. Ferrario and A. L. Ferreira and F. W. Foss and E. D. C. Freitas and Z. Freixa and J. Generowicz and A. Goldschmidt and J. J. Gómez-Cadenas and R. González and J. Grocott and K. Hafidi and J. Hauptman and C. A. O. Henriques and J. A. Hernando Morata and P. Herrero-Gómez and V. Herrero and C. Hervés Carrete and Y. Ifergan and L. Labarga and L. Larizgoitia and A. Larumbe and P. Lebrun and F. Lopez and N. López-March and R. Madigan and R. D. P. Mano and A. P. Marques and J. Martín-Albo and G. Martínez-Lema and M. Martínez-Vara and Z. E. Meziani and R. L. Miller and K. Mistry and J. Molina-Canteras and F. Monrabal and C. M. B. Monteiro and F. J. Mora and J. Muñoz Vidal and P. Novella and A. Nuñez and D. R. Nygren and E. Oblak and J. Palacio and B. Palmeiro and A. Para and I. Parmaksiz and J. Pelegrin and M. Pérez Maneiro and M. Querol and A. B. Redwine and J. Renner and I. Rivilla and J. Rodríguez and C. Rogero and L. Rogers and B. Romeo and C. Romo-Luque and F. P. Santos and J. M. F. dos Santos and I. Shomroni and A. Simón and S. R. Soleti and M. Sorel and J. Soto-Oton and J. M. R. Teixeira and J. F. Toledo and J. Torrent and A. Trettin and A. Usón and J. F. C. A. Veloso and J. Waiton and J. T. White},
journal= {arXiv preprint arXiv:2311.03441},
year = {2024}
}
Comments
18 pages, 16 figures