56 citations · 98 across the 7 of their papers we have counts for
11 papers · 1 filter
An LLVM-based C++ Compiler Toolchain for Variational Hybrid Quantum-Classical Algorithms and Quantum Accelerators
Pradnya Khalate, Xin-Chuan Wu, Shavindra Premaratne +6
Variational algorithms are a representative class of quantum computing workloads that combine quantum and classical computing. This paper presents an LLVM-based C++ compiler toolch…
DigiQ: A Scalable Digital Controller for Quantum Computers Using SFQ Logic
Mohammad Reza Jokar, Richard Rines, Ghasem Pasandi +5
The control of cryogenic qubits in today's superconducting quantum computer prototypes presents significant scalability challenges due to the massive costs of generating/routing th…
Entanglement Properties of Quantum Superpositions of Smooth, Differentiable Functions
Adam Holmes, A. Y. Matsuura
We present an entanglement analysis of quantum superpositions corresponding to smooth, differentiable, real-valued (SDR) univariate functions. SDR functions are shown to be scalabl…
Efficient Quantum Circuits for Accurate State Preparation of Smooth, Differentiable Functions
Adam Holmes, A. Y. Matsuura
Effective quantum computation relies upon making good use of the exponential information capacity of a quantum machine. A large barrier to designing quantum algorithms for executio…
On connectivity-dependent resource requirements for digital quantum simulation of -level particles
Nicolas P. D. Sawaya, Gian Giacomo Guerreschi, Adam Holmes
A primary objective of quantum computation is to efficiently simulate quantum physics. Scientifically and technologically important quantum Hamiltonians include those with spin-…
NISQ+: Boosting quantum computing power by approximating quantum error correction
Adam Holmes, Mohammad Reza Jokar, Ghasem Pasandi +3
Quantum computers are growing in size, and design decisions are being made now that attempt to squeeze more computation out of these machines. In this spirit, we design a method to…