699 citations · 753 across the 3 of their papers we have counts for
7 papers
Quantum Divide and Compute: Hardware Demonstrations and Noisy Simulations
Thomas Ayral, François-Marie Le Régent, Zain Saleem +2
Noisy, intermediate-scale quantum computers come with intrinsic limitations in terms of the number of qubits (circuit "width") and decoherence time (circuit "depth") they can have.…
NWChem: Past, Present, and Future
E. Aprà, E. J. Bylaska, W. A. de Jong +111
Specialized computational chemistry packages have permanently reshaped the landscape of chemical and materials science by providing tools to support and guide experimental efforts…
Full-State Quantum Circuit Simulation by Using Data Compression
Xin-Chuan Wu, Sheng Di, Emma Maitreyee Dasgupta +4
Quantum circuit simulations are critical for evaluating quantum algorithms and machines. However, the number of state amplitudes required for full simulation increases exponentiall…
Evaluation of Intel Memory Drive Technology Performance for Scientific Applications
Vladimir Mironov, Andrey Kudryavtsev, Yuri Alexeev +3
In this paper, we present benchmark data for Intel Memory Drive Technology (IMDT), which is a new generation of Software-defined Memory (SDM) based on Intel ScaleMP collaboration a…
Memory-Efficient Quantum Circuit Simulation by Using Lossy Data Compression
Xin-Chuan Wu, Sheng Di, Franck Cappello +3
In order to evaluate, validate, and refine the design of new quantum algorithms or quantum computers, researchers and developers need methods to assess their correctness and fideli…
Amplitude-Aware Lossy Compression for Quantum Circuit Simulation
Xin-Chuan Wu, Sheng Di, Franck Cappello +3
Classical simulation of quantum circuits is crucial for evaluating and validating the design of new quantum algorithms. However, the number of quantum state amplitudes increases ex…