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Characterization and novel application of power over fiber for electronics in a harsh environment

  • M. A. Arroyave
  • , B. Behera
  • , F. Cavanna
  • , A. Feld
  • , F. Guo
  • , A. Heindel
  • , C. K. Jung
  • , K. Koch
  • , D. Leon Silverio
  • , D. A. Martinez Caicedo
  • , C. McGrew
  • , A. Paudel
  • , W. Pellico
  • , R. Rivera
  • , J. Rodríguez Rondon
  • , S. Sacerdoti
  • , P. Shanahan
  • , W. Shi
  • , D. Torres Muñoz
  • , D. Totani
  • C. Uy, C. Vermeulen, H. Vieira de Souza
  • Fermi National Accelerator Laboratory
  • South Dakota School of Mines & Technology
  • Stony Brook University
  • Université Paris Cité
  • University of California at Santa Barbara

Research output: Contribution to journalArticlepeer-review

18 Scopus citations

Abstract

Power-over-Fiber (PoF) technology has been used extensively in settings where high voltages require isolation from ground. In a novel application of PoF, power is provided to photon detector modules located on a surface at ∼ 300 kV with respect to ground in the planned DUNE experiment. In cryogenic environments, PoF offers a reliable means of power transmission, leveraging optical fibers to transfer optical power. PoF technology excels in maintaining low noise levels when delivering power to sensitive electronic systems operating in extreme temperatures and high voltage environments. This paper presents the R&D effort of PoF in extreme conditions and underscores its capacity to revolutionize power delivery and management in critical applications, offering a dependable solution with low noise, optimal efficiency (∼ 51%), and superior isolation.

Original languageEnglish
Article numberP10019
JournalJournal of Instrumentation
Volume19
Issue number10
DOIs
StatePublished - Oct 1 2024

Keywords

  • Cryogenics
  • Lasers
  • Noble liquid detectors (scintillation, ionization, double-phase)
  • Time projection Chambers (TPC)

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