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DTSTART:19700308T020000
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DTSTAMP:20230124T171525Z
LOCATION:C140-142
DTSTART;TZID=America/Chicago:20221113T111000
DTEND;TZID=America/Chicago:20221113T113000
UID:submissions.supercomputing.org_SC22_sess423_ws_qcs114@linklings.com
SUMMARY:A Compiler for Universal Photonic Quantum Computers
DESCRIPTION:Workshop\n\nA Compiler for Universal Photonic Quantum Computer
 s\n\nZilk, Staudacher, Guggemos, Fürlinger, Dieter...\n\nPhotons are natur
 al resources in quantum information, and the last decade showed significan
 t progress in high-quality single photon generation and detection. Further
 more, photonic qubits are easy to manipulate and do not require particular
 ly strongly sealed environments, making them an appealing platform for QC.
  With the one-way model, the vision of universal and large-scale QCs based
  on photonics becomes feasible. In one-way computing, the input state is n
 ot an initial product state |0>^n, but a so-called cluster state. A series
  of measurements on the cluster state's individual qubits and their tempor
 al order, together with a  feed-forward procedure, determine the quantum c
 ircuit to be executed. We propose a pipeline to convert a QASM circuit int
 o a graph representation named measurement-graph (m-graph), that can be di
 rectly translated to hardware instructions on an optical one-way QC. Addit
 ionally, we optimize the graph using ZX-Calculus before evaluating the exe
 cution on an experimental discrete variable photonic platform.\n\nSession 
 Format: Recorded\n\nTag: Quantum Computing\n\nRegistration Category: Works
 hop Reg Pass
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