4 citations · 8 across the 6 of their papers we have counts for
17 papers · 1 filter
Snowmass White Paper: Quantum Computing Systems and Software for High-energy Physics Research
Travis S. Humble, Andrea Delgado, Raphael Pooser +23
Quantum computing offers a new paradigm for advancing high-energy physics research by enabling novel methods for representing and reasoning about fundamental quantum mechanical phe…
Enabling a Programming Environment for an Experimental Ion Trap Quantum Testbed
Austin Adams, Elton Pinto, Jeffrey Young +4
Ion trap quantum hardware promises to provide a computational advantage over classical computing for specific problem spaces while also providing an alternative hardware implementa…
Enabling Retargetable Optimizing Compilers for Quantum Accelerators via a Multi-Level Intermediate Representation
Thien Nguyen, Alexander McCaskey
We present a multi-level quantum-classical intermediate representation (IR) that enables an optimizing, retargetable, ahead-of-time compiler for available quantum programming langu…
Extending Python for Quantum-Classical Computing via Quantum Just-in-Time Compilation
Thien Nguyen, Alexander J. McCaskey
Python is a popular programming language known for its flexibility, usability, readability, and focus on developer productivity. The quantum software community has adopted Python o…
Tensor Network Quantum Virtual Machine for Simulating Quantum Circuits at Exascale
Thien Nguyen, Dmitry Lyakh, Eugene Dumitrescu +3
The numerical simulation of quantum circuits is an indispensable tool for development, verification and validation of hybrid quantum-classical algorithms on near-term quantum co-pr…
A MLIR Dialect for Quantum Assembly Languages
Alexander McCaskey, Thien Nguyen
We demonstrate the utility of the Multi-Level Intermediate Representation (MLIR) for quantum computing. Specifically, we extend MLIR with a new quantum dialect that enables the exp…