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DTSTART;TZID=America/Denver:20231113T113000
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UID:submissions.supercomputing.org_SC23_sess446_ws_qcs107@linklings.com
SUMMARY:TISCC:   A Surface Code Compiler and Resource Estimator for Trappe
 d-Ion Processors
DESCRIPTION:Tyler LeBlond, Justin Lietz, Christopher Seck, and Ryan Bennin
 k (Oak Ridge National Laboratory (ORNL))\n\nWe introduce the Trapped-Ion S
 urface Code Compiler (TISCC), a software tool that generates circuits for 
 a universal set of surface code patch operations in terms of a native trap
 ped-ion gate set. To accomplish this, TISCC manages an internal representa
 tion of a trapped-ion system where a repeating pattern of trapping zones a
 nd junctions is arranged in an arbitrarily large rectangular grid. Surface
  code operations are compiled by instantiating surface code patches on the
  grid and using methods to generate transversal operations over data qubit
 s, rounds of error correction over stabilizer plaquettes, and/or lattice s
 urgery operations between neighboring patches. Beyond the implementation o
 f a basic surface code instruction set, TISCC contains corner movement fun
 ctionality and a patch translation that is implemented using ion movement 
 alone. Except in the latter case, all TISCC functionality is extensible to
  alternative grid-like hardware architectures. TISCC output has been verif
 ied using the Oak Ridge Quasi-Clifford Simulator (ORQCS).\n\nTag: Quantum 
 Computing, Software Engineering\n\nRegistration Category: Workshop Reg Pas
 s\n\nSession Chairs: Yuri Alexeev (NVIDIA Corporation); Bert de Jong (Lawr
 ence Berkeley National Laboratory (LBNL)); Travis Humble (Oak Ridge Nation
 al Laboratory (ORNL), Quantum Science Centre); Dmitry Liakh (NVIDIA Corpor
 ation); Hausi Muller (University of Victoria, British Columbia; IEEE Quant
 um Week); and Ojas Parekh (Sandia National Laboratories)\n\n
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