Quantum entanglement—a phenomenon where particles are mysteriously linked no matter how far apart they are—presents a long-standing challenge in the physical world, particularly in understanding its ...
Many physicists and engineers have recently been trying to demonstrate the potential of quantum computers for tackling some problems that are particularly demanding and are difficult to solve for ...
Researchers at the University of Tokyo have identified a precise sweet spot where quantum reservoir computing, a machine learning approach that treats quantum systems as computational engines, reaches ...
Quantum many-body systems encompass ensembles of interacting particles whose collective behaviour gives rise to rich and often unexpected phenomena. Central to their study is the interplay between ...
A new study in Nature Communications has established a link between the Riemann Hypothesis and dynamical phase transitions in ...
Quantum dynamics—the study of how particles behave and interact in a quantum system—has long fascinated physicists due to its puzzling and sometimes bizarre behaviors. Unlike classical systems, where ...
A team of researchers have developed a new method for characterising quantum properties of large systems using graph theory Artistic impression of quantum entanglement of two atoms (Courtesy: ...
Scientists have created the first quantum material that can sort and transport different quantum states of light at room ...
A research team has recently developed a novel algorithm in quantum physics known as 'entanglement microscopy' that enables visualization and mapping of this extraordinary phenomenon at a microscopic ...
Integrable many-body systems are distinguished by the existence of infinitely many conservation laws, which constrain their out-of-equilibrium evolution and often admit exact mathematical treatment.
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