To progress in the characterization of noise for quantum computers, gate set tomography (GST) has emerged as a self-consistent protocol that accurately estimates noisy gates, state preparations, and ...
Researchers have successfully simulated the birth of fundamental matter on three separate quantum computers, replicating ...
The integration of deep neural networks with the variational Monte Carlo (VMC) method has marked a substantial advancement in solving the Schrödinger equation. In this work we enforce spin symmetry in ...
A team from SUNY Polytechnic Institute has designed a quantum rule-based simulator known as Quantum Tic-Tac-Toe. The ...
A research team led by faculty at the Duke Quantum Center (DQC) has observed string-breaking dynamics related to particle-antiparticle formation on a quantum simulator, among the first such ...
Quantum simulation of particle physics reached a milestone this week: IBM, Duke, and QuEra quantum computers each independently ran real-time gluon string-breaking, the process that creates every ...
Simulating the fundamental forces of nature on a computer is one of the grand challenges of modern physics, and a team at the ...
In an exper­i­ment car­ried out in 2009, our group has performed a quantum simu­la­tion of the Dirac equa­tion using a single trapped ion and observed so called Zitter­be­we­gung, a pecu­liar ...
Austrian researchers realize a toolbox for open-system quantum simu­la­tion Exper­i­mental physi­cists have put a lot of ...
IonQ and Synopsys demonstrate a hybrid quantum approach that cuts engineering simulation runtimes by up to 14.6%.
Researchers from the Department of Energy's Quantum Science Center (QSC) headquartered at Oak Ridge National Laboratory (ORNL) have achieved a significant milestone by demonstrating the first digital ...
DecaQ.ai, digital quantum computation technology, announced results for a FeMoco CAS(54e,54o) QPE workload executed ...