• DocumentCode
    37530
  • Title

    Externally-Modulated Electro-Optically Coupled Detector Architecture for Nuclear Physics Instrumentation

  • Author

    Wenze Xi ; McKisson, J.E. ; Weisenberger, Andrew G. ; Shukui Zhang ; Zorn, Chris

  • Author_Institution
    Thomas Jefferson Nat. Accel. Facility, Newport News, VA, USA
  • Volume
    61
  • Issue
    3
  • fYear
    2014
  • fDate
    Jun-14
  • Firstpage
    1333
  • Lastpage
    1339
  • Abstract
    A new laser-based externally-modulated electro-optically coupled detector (EOCD) architecture is being developed to enable high-density readout for radiation detectors with accurate analog radiation pulse shape and timing preservation. Unlike digital conversion before electro-optical modulation, the EOCD implements complete analog optical signal modulation and multiplexing in its detector front-end. The result is a compact, high performance detector readout that can be both radiation tolerant and immune to magnetic fields. In this work, the feasibility of EOCD was explored by constructing a two-wavelength laser-based externally-modulated EOCD, and testing analog pulse shape preservation and wavelength-division multiplexing (WDM) crosstalk. Comparisons were first made between the corresponding initial pulses and the electro-optically coupled analog pulses. This confirmed an excellent analog pulse preservation over ~ 29% of the modulator´s switching voltage range. Optical spectrum analysis revealed less than -14 dB crosstalk with 1.2 nm WDM wavelength bandgap, and provided insight on experimental conditions that could lead to increased inter-wavelength crosstalk. Further discussions and previous research on the radiation tolerance and magnetic field immunity of the candidate materials were also given, and quantitative device testing is proposed in the future.
  • Keywords
    electro-optical modulation; modulators; nuclear electronics; position sensitive particle detectors; readout electronics; wavelength division multiplexing; EOCD architecture; EOCD feasibility; EOCD implementation; WDM crosstalk; WDM wavelength bandgap; accurate analog radiation pulse shape; analog pulse preservation; candidate materials; compact detector; complete analog optical signal modulation; complete analog optical signal multiplexing; detector front-end; digital conversion; electro-optical modulation; electro-optically coupled analog pulses; experimental conditions; high performance detector; high-density readout; increased inter-wavelength crosstalk; initial pulses; laser-based externally-modulated electro-optically coupled detector architecture; magnetic field immunity; modulator switching voltage range; nuclear physics instrumentation; optical spectrum analysis; quantitative device testing; radiation detectors; radiation tolerance; testing analog pulse shape preservation; timing preservation; two-wavelength laser-based externally-modulated EOCD; wavelength-division multiplexing crosstalk; Detectors; Optical crosstalk; Optical modulation; Optical pulses; Optical waveguides; Wavelength division multiplexing; Arrayed waveguide grating; electro-optical coupling; external-modulation; lasers; magnetic field; multiplexing; nuclear physics instrumentation; radiation; radiation detectors; wavelength-division multiplexing;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2014.2322519
  • Filename
    6825919