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quant-ph2026

TopoLS: Lattice Surgery Compilation via Topological Program Transformations

Junyu Zhou, Yuhao Liu, Ethan Decker +5

Lattice surgery is a leading approach for implementing fault-tolerant logical operations in surface code quantum computing, but compiling efficient lattice surgery layouts remains…

quant-ph2025

F2: Offline Reinforcement Learning for Hamiltonian Simulation via Free-Fermionic Subroutine Compilation

Ethan Decker, Christopher Watson, Junyu Zhou +5

Compiling shallow and accurate quantum circuits for Hamiltonian simulation remains challenging due to hardware constraints and the combinatorial complexity of minimizing gate count…

quant-ph2025

Kernpiler: Compiler Optimization for Quantum Hamiltonian Simulation with Partial Trotterization

Ethan Decker, Lucas Goetz, Evan McKinney +9

Quantum computing promises transformative impacts in simulating Hamiltonian dynamics, essential for studying physical systems inaccessible by classical computing. However, existing…

quant-ph2025

QTurbo: A Robust and Efficient Compiler for Analog Quantum Simulation

Junyu Zhou, Yuhao Liu, Shize Che +5

Analog quantum simulation leverages native hardware dynamics to emulate complex quantum systems with great efficiency by bypassing the quantum circuit abstraction. However, convent…

quant-ph2025

Verifying Fault-Tolerance of Quantum Error Correction Codes

Kean Chen, Yuhao Liu, Wang Fang +5

Quantum computers have advanced rapidly in qubit count and gate fidelity. However, large-scale fault-tolerant quantum computing still relies on quantum error correction code (QECC)…

quant-ph2024

HATT: Hamiltonian Adaptive Ternary Tree for Optimizing Fermion-to-Qubit Mapping

Yuhao Liu, Kevin Yao, Jonathan Hong +5

This paper introduces the Hamiltonian-Adaptive Ternary Tree (HATT) framework to compile optimized Fermion-to-qubit mapping for specific Fermionic Hamiltonians. In the simulation of…