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Simplifying quantum simulations—symmetry can cut computational effort by several orders of magnitude
Quantum computer research is advancing at a rapid pace. Today's devices, however, still have significant limitations: For example, the length of a quantum computation is severely limited—that is, the ...
Just a few years ago, many researchers in quantum computing thought it would take several decades to develop machines that ...
Quantum hardware has finally crossed a psychological threshold: it is no longer a science project in search of a purpose, it is a working tool that large companies and governments are starting to use.
Scientists have finally figured out how to read ultra-secure Majorana qubits—bringing robust quantum computing a big step closer. “This is a crucial advance,” says Ramón Aguado, a CSIC researcher at ...
Researchers in the Harvard John A. Paulson School of Engineering and Applied Sciences (SEAS) and the Faculty of Arts and ...
Even as quantum computing advances steadily, it will not replace classical computers in the near future. Most current systems ...
Editor’s note: Columnist Charlie Garcia shares select emails and online comments from his virtual mailbag each week. I see three investment lanes for quantum computing: pure plays like IonQ and ...
By using controlled microwave noise, researchers created a quantum refrigerator capable of operating as a cooler, heat engine, or amplifier. This approach offers a new way to manage heat directly ...
Artificial intelligence and quantum computing are no longer hypothetical; they are actively altering cybersecurity, extending attack surfaces, escalating dangers, and eroding existing defenses.
A Connecticut nonprofit is on a mission to deliver educational programs to high school students in New Haven. District Arts and Education, also known as DAE, created a new program focused on quantum ...
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