80 citations · 301 across the 12 of their papers we have counts for
7 papers · 1 filter
Architectures for Multinode Superconducting Quantum Computers
James Ang, Gabriella Carini, Yanzhu Chen +30
Many proposals to scale quantum technology rely on modular or distributed designs where individual quantum processors, called nodes, are linked together to form one large multinode…
Error-Mitigated Simulation of Quantum Many-Body Scars on Quantum Computers with Pulse-Level Control
I-Chi Chen, Benjamin Burdick, Yongxin Yao +2
Quantum many-body scars are an intriguing dynamical regime in which quantum systems exhibit coherent dynamics and long-range correlations when prepared in certain initial states. W…
Comparative study of adaptive variational quantum eigensolvers for multi-orbital impurity models
Anirban Mukherjee, Noah F. Berthusen, João C. Getelina +2
Hybrid quantum-classical embedding methods for correlated materials simulations provide a path towards potential quantum advantage. However, the required quantum resources arising…
Error mitigation in variational quantum eigensolvers using tailored probabilistic machine learning
Tao Jiang, John Rogers, Marius S. Frank +3
Quantum computing technology has the potential to revolutionize the simulation of materials and molecules in the near future. A primary challenge in achieving near-term quantum adv…
Adaptive variational quantum eigensolvers for highly excited states
Feng Zhang, Niladri Gomes, Yongxin Yao +2
Highly excited states of quantum many-body systems are central objects in the study of quantum dynamics and thermalization that challenge classical computational methods due to the…
Adaptive Variational Quantum Dynamics Simulations
Yong-Xin Yao, Niladri Gomes, Feng Zhang +4
We propose a general-purpose, self-adaptive approach to construct variational wavefunction ansätze for highly accurate quantum dynamics simulations based on McLachlan's variational…