An MLIR-native NumPy-like DSL with a new dialect-agnostic type checker and parallel-first lowering to a dataflow dialect, shown on weather modeling and CFD workloads in Fortran.
Q#: Enabling scalable quantum computing and development with a high-level dsl
7 Pith papers cite this work, alongside 20 external citations. Polarity classification is still indexing.
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Cobble is a domain-specific language for quantum block encodings that compiles high-level matrix expressions to optimized circuits using analyses and quantum singular value transformation, achieving 2.6x-25.4x speedups over unoptimized baselines on benchmarks.
qstack introduces callback wrapping in a quantum IR to allow compositional end-to-end compilation of fault-tolerant quantum programs including concatenated error-correcting codes without manual classical logic adaptation.
A taxonomy-guided RAG system with LLMs reduces hallucinations and improves migration suggestions for Qiskit code compared to unconstrained retrieval.
QHAT is a user-friendly software toolkit for Hamiltonian generation, analysis, and fault-tolerant quantum simulation driven by error tolerances rather than algorithmic parameters.
The authors present Pilot-Quantum, a middleware for adaptive resource management in hybrid quantum-HPC systems, along with execution motifs and a performance modeling toolkit called Q-Dreamer.
A survey of nine QHPC stacks identifies common design patterns and proposes the openQSE reference architecture to unify interfaces across runtime, resource management, and orchestration layers.
citing papers explorer
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Demonstrating a Future for MLIR-native DSL Compilers on a NumPy-like Example
An MLIR-native NumPy-like DSL with a new dialect-agnostic type checker and parallel-first lowering to a dataflow dialect, shown on weather modeling and CFD workloads in Fortran.
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Cobble: Compiling Block Encodings for Quantum Computational Linear Algebra
Cobble is a domain-specific language for quantum block encodings that compiles high-level matrix expressions to optimized circuits using analyses and quantum singular value transformation, achieving 2.6x-25.4x speedups over unoptimized baselines on benchmarks.
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qstack: Compositional End-to-End Compilation for Fault-Tolerant Quantum Programs
qstack introduces callback wrapping in a quantum IR to allow compositional end-to-end compilation of fault-tolerant quantum programs including concatenated error-correcting codes without manual classical logic adaptation.
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Qiskit Code Migration with LLMs
A taxonomy-guided RAG system with LLMs reduces hallucinations and improves migration suggestions for Qiskit code compared to unconstrained retrieval.
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The Quantum Hamiltonian Analysis Toolkit: Lowering the Barrier to Quantum Computing with Hamiltonians
QHAT is a user-friendly software toolkit for Hamiltonian generation, analysis, and fault-tolerant quantum simulation driven by error tolerances rather than algorithmic parameters.
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Hybrid Quantum-HPC Middleware Systems for Adaptive Resource, Workload and Task Management
The authors present Pilot-Quantum, a middleware for adaptive resource management in hybrid quantum-HPC systems, along with execution motifs and a performance modeling toolkit called Q-Dreamer.
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Quantum-HPC Software Stacks and the openQSE Reference Architecture: A Survey
A survey of nine QHPC stacks identifies common design patterns and proposes the openQSE reference architecture to unify interfaces across runtime, resource management, and orchestration layers.