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UID:submissions.supercomputing.org_SC25_sess224@linklings.com
SUMMARY:The 1st International Workshop for Software Frameworks and Workloa
 d Management on Quantum-HPC Ecosystems
DESCRIPTION:This workshop focuses on the development of software framework
 s and workload management strategies that are crucial for quantum-HPC (Q-H
 PC) ecosystems. As quantum computing progresses, integrating quantum proce
 ssors with HPC systems presents significant opportunities to tackle comple
 x, large-scale problems. Experts from academia, industry, and national lab
 s will discuss the challenges of managing hybrid resources, along with cut
 ting-edge research on middleware, scheduling algorithms, decomposition str
 ategies, and benchmarking methodologies for Q-HPC systems. The workshop wi
 ll include keynote talks, paper presentations, panel discussions, and inte
 ractive demos to foster collaboration and advance the state of hybrid comp
 uting. By the end of the workshop, attendees will have gained valuable ins
 ights into best practices, emerging technologies, and future directions in
  Q-HPC integration, contributing to the broader goal of making quantum com
 puting a practical extension of HPC environments.\n\nA Simulation Framewor
 k for Workload Management in Hybrid Quantum-HPC Cloud System\n\nThe conver
 gence of quantum computing and high-performance computing (HPC) is giving 
 rise to hybrid cloud platforms that coordinate workflows across classical 
 and quantum resources. These heterogeneous environments introduce new chal
 lenges for workload management, including device variability, noise-...\n\
 n\nWaylon Luo (Kent State University), Cheng-Chang Lu (Qradle Inc.), Tong 
 Zhan (Meta Platform), and Qiang Guan (Kent State University)\n------------
 ---------\nScaling Hybrid Quantum--HPC Applications with the Quantum Frame
 work\n\nHybrid quantum–high performance computing (Q-HPC) workflows are em
 erging as a key strategy for running quantum applications at scale on nois
 y intermediate-scale quantum (NISQ) devices. These workflows must operate 
 seamlessly across diverse simulators and hardware backends since no single
  simul...\n\n\nSrikar Chundury (North Carolina State University); Amir She
 hata, Seongmin Kim, and Muralikrishnan Gopalakrishnan Meena (Oak Ridge Nat
 ional Laboratory (ORNL)); Chao Lu (Oak Ridge National Laboratory); Kalyan 
 Gottiparthi (Oak Ridge National Laboratory (ORNL)); Eduardo Antonio Coello
  Perez (Oak Ridge National Laboratory); Frank Mueller (North Carolina Stat
 e University); and In-Saeng Suh (Oak Ridge National Laboratory (ORNL))\n--
 -------------------\nTowards Supporting QIR: Steps for Adopting the Quantu
 m Intermediate Representation\n\nAs quantum computers grow in qubit count 
 and fidelity, translating applications into hardware-specific instructions
  becomes essential. Intermediate representations (IRs) help optimize this 
 process. One such IR is Microsoft’s Quantum Intermediate Representation (Q
 IR), built on the LLVM compiler...\n\n\nYannick Stade (Technical Universit
 y Munich) and Lukas Burgholzer and Robert Wille (Technical University Muni
 ch, Munich Quantum Software Company)\n---------------------\nAn HPC-Inspir
 ed Blueprint for a Technology-Agnostic Quantum Middle Layer\n\nWe present 
 a blueprint for a quantum middle layer that supports applications across v
 arious quantum technologies. Inspired by concepts and abstractions from HP
 C libraries and middleware, our design is backend-neutral and context-awar
 e. A program only needs to specify its intent once, as typed data a...\n\n
 \nStefano Markidis, Gilbert Netzer, Luca Pennati, and Ivy Peng (KTH Royal 
 Institute of Technology)\n---------------------\nFirst Practical Experienc
 es Integrating Quantum Computers with HPC Resources: A Case Study With a 2
 0-qubit Superconducting Quantum Computer\n\nIncorporating Quantum Computin
 g (QC) into High Performance Computing (HPC) environments (commonly referr
 ed to as HPC+QC integration) marks a pivotal step in advancing computation
 al capabilities for scientific research. This paper provides a firsthand a
 ccount of integrating a superconducting 20-qubit...\n\n\nEric Mansfield, S
 tefan Seegerer, and Panu Vesanen (IQM Quantum Computers); Jorge Echavarria
 , Muhammad Nufail Farooqi, and Burak Mete (Leibniz Supercomputing Centre (
 LRZ)); and Laura Schulz (Argonne National Laboratory (ANL))\n-------------
 --------\nTackling the Challenges of Adding Pulse-level Support to a Heter
 ogeneous HPCQC Software Stack\n\nWe present an approach to add native puls
 e-level control to heterogeneous HPCQC stacks, using the Munich Quantum So
 ftware Stack (MQSS) as a case study. Pulse programs are captured by three 
 low-level abstractions, that is, ports (I/O channels), frames (reference s
 ignals), and waveforms (pulse envelop...\n\n\nJorge Echavarria and Muhamma
 d Nufail Farooqi (Leibniz Supercomputing Centre (LRZ)); Amit Devra (Techni
 cal University of Munich (TUM)); Santana Lujan and Leo Van Damme (German A
 erospace Center (DLR)); Hossam Ahmed, Martín Letras, and Ercüment Kaya (Le
 ibniz Supercomputing Centre (LRZ)); Adrian Vetter (planqc GmbH); Max Werni
 nghaus and Martin Knudsen (Walther-Meißner-Institut (WMI)); Felix Rohde an
 d Albert Frisch (Alpine Quantum Technologies GmbH (AQT)); Eric Mansfield, 
 Rakhim Davletkaliyev, Vladimir Kukushkin, Noora Färkkilä, and Janne Mäntyl
 ä (IQM Quantum Computers); Nikolas Pomplun and Andreas Spörl (German Aeros
 pace Center (DLR)); Lukas Burgholzer (Technical University of Munich (TUM)
 , Munich Quantum Software Company GmbH (MQSC)); Yannick Stade (Technical U
 niversity of Munich (TUM)); Robert Wille (Technical University of Munich (
 TUM), Munich Quantum Software Company GmbH (MQSC)); Laura B. Schulz (Argon
 ne National Laboratory (ANL)); and Martin Schulz (Leibniz Supercomputing C
 entre (LRZ), Technical University of Munich (TUM))\n---------------------\
 nPanel Discussion - Challenges in Q-HPC Software Frameworks & Workload Man
 agement\n\nFrank Mueller (North Carolina State University); Yuri Alexeev (
 NVIDIA); Shantenu Jha (Princeton University); Karen Horovitz (IonQ Inc.); 
 Eric Mansfield (IQM); and Lukas Burgholzer (Technical University of Munich
 , Munich Quantum Software Company (MQSC))\n---------------------\nInvited 
 Talk - The Current and Future of Q-HPC Software Frameworks\n\nLaura Schulz
  (Argonne National Laboratory (ANL))\n---------------------\nMorning Break
  - Workshop for Software Frameworks and Workload Management on Quantum-HPC
  Ecosystems\n---------------------\nOrchestrating Quantum-HPC Workflows wi
 th Distributed Quantum Circuit Cutting\n\nMost quantum computers today are
  constrained by hardware limitations, particularly the number of available
  qubits, causing significant challenges for executing large-scale quantum 
 algorithms. Circuit cutting has emerged as a key technique to overcome the
 se limitations by decomposing large quantum ci...\n\n\nMar Tejedor (Barcel
 ona Supercomputing Center (BSC)); Berta Casas (Barcelona Supercomputing Ce
 nter (BSC), Universitat de Barcelona); Javier Conejero and Alba Cervera-Li
 erta (Barcelona Supercomputing Center (BSC)); and Rosa M. Badia (Barcelona
  Supercomputing Center (BSC), Universitat Politècnica de Catalunya)\n-----
 ----------------\nThe First International Workshop for Software Frameworks
  and Workload Management on Quantum-HPC Ecosystems\n\nThis workshop focuse
 s on the development of software frameworks and workload management strate
 gies that are crucial for quantum-HPC (Q-HPC) ecosystems. As quantum compu
 ting progresses, integrating quantum processors with HPC systems presents 
 significant opportunities to tackle complex, large-scale p...\n\n\nIn-Saen
 g Suh (Oak Ridge National Laboratory (ORNL)); Esam El-Araby (University of
  Kansas); Edoardo Giusto (University of Naples Federico II); Katherine Kly
 mko (National Energy Research Scientific Computing Center (NERSC), Lawrenc
 e Berkeley National Laboratory (LBNL)); Frank Mueller (North Carolina Stat
 e University); and Jorge Echavarria (Leibniz Supercomputing Centre (LRZ))\
 n---------------------\nA Practical Quantum Solver for Multidimensional Pa
 rtial Differential Equations\n\nQuantum computing has the potential to tra
 nsform computational problem-solving by leveraging quantum mechanical prin
 ciples of superposition and entanglement. This capability is particularly 
 important for the numerical solution of complex and/or multidimensional pa
 rtial-differential-equations (PDEs)....\n\n\nManu Chaudhary (Illinois Stat
 e University) and Kareem El-Araby, Alvir Nobel, Ishraq Islam, Manish Singh
 , Sunday Ogundele, Kieran Egan, Sneha Thomas, Vincent Vordtriede, Devon Bo
 ntrager, Serom Kim, and Esam El-Araby (University of Kansas)\n------------
 ---------\nTowards a user-centric HPC-QC environment\n\nRobust execution e
 nvironments for quantum computing can aid the industry with key challenges
  like application development, portability, and reproducibility, and help 
 unlock the development of more modular quantum program, driving forward hy
 brid quantum workflows.\n\nIn this work, we show progress towa...\n\n\nAle
 ksander Wennersteen, Matthieu Moreau, Aurelien Nober, and Mourad Beji (Pas
 qal)\n\nRecording: Livestreamed, Recorded\n\nRegistration Category: Techni
 cal Program Reg Pass, Workshop Reg Pass\n\nSession Chairs: In-Saeng Suh (O
 ak Ridge National Laboratory (ORNL)); Esam El-Araby (University of Kansas)
 ; Edo Giusto (University of Naples Federico II); Katie Klymko (National En
 ergy Research Scientific Computing Center (NERSC), ESnet; Lawrence Berkele
 y National Laboratory (LBNL)); Frank Mueller (North Carolina State Univers
 ity); and Jorge Echavarria (Munich Quantum Valley (MQV))
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