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DTSTART;TZID=America/Chicago:20251121T103000
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UID:submissions.supercomputing.org_SC25_sess224_ws_sfwm104@linklings.com
SUMMARY:Orchestrating Quantum-HPC Workflows with Distributed Quantum Circu
 it Cutting
DESCRIPTION:Mar Tejedor (Barcelona Supercomputing Center (BSC)); Berta Cas
 as (Barcelona Supercomputing Center (BSC), Universitat de Barcelona); Javi
 er Conejero and Alba Cervera-Lierta (Barcelona Supercomputing Center (BSC)
 ); and Rosa M. Badia (Barcelona Supercomputing Center (BSC), Universitat P
 olitècnica de Catalunya)\n\nMost quantum computers today are constrained b
 y hardware limitations, particularly the number of available qubits, causi
 ng significant challenges for executing large-scale quantum algorithms. Ci
 rcuit cutting has emerged as a key technique to overcome these limitations
  by decomposing large quantum circuits into smaller subcircuits that can b
 e executed independently and later reconstructed. Qdislib is a distributed
  and flexible library for quantum circuit cutting, designed to seamlessly 
 integrate with hybrid quantum-classical HPC systems. Qdislib employs a gra
 ph-based representation of quantum circuits to enable efficient partitioni
 ng, manipulation and execution, supporting both wire and gate cutting tech
 niques. The library is compatible with multiple quantum programming langua
 ges, including Qiskit and Qibo, and leverages distributed computing to exe
 cute subcircuits across CPUs, GPUs, and quantum processing units in a full
 y parallelized manner. The paper describes Qdislib and demonstrates how it
  enables the distributed execution of quantum circuits across heterogeneou
 s resources, showcasing its potential for scalable quantum-classical workf
 lows.\n\nRecording: Livestreamed, Recorded\n\nRegistration Category: Techn
 ical Program Reg Pass, Workshop Reg Pass\n\nSession Chairs: In-Saeng Suh (
 Oak Ridge National Laboratory (ORNL)); Esam El-Araby (University of Kansas
 ); Edo Giusto (University of Naples Federico II); Katie Klymko (National E
 nergy Research Scientific Computing Center (NERSC), ESnet; Lawrence Berkel
 ey National Laboratory (LBNL)); Frank Mueller (North Carolina State Univer
 sity); and Jorge Echavarria (Munich Quantum Valley (MQV))\n\n
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