Fault-tolerant quantum computers have long demanded either restricted logic or substantial qubit resources to correct errors.
Until now, constructing dependable quantum codes required relying on randomly generated parameters despite knowing optimality ...
New research demonstrates that quantum codes correct errors even with qubit loss or gain, establishing an equivalence between ...
Constant-overhead injection into quantum error correction is now possible for the first time. Previously limited by ...
Can predicting energy levels from quantum systems be done efficiently on conventional computers? New results demonstrate this ...
Previously, designing effective quantum circuits relied upon ad hoc methods limited to Clifford operations and gauging cases.
Can quantum sensors achieve unbounded gains in efficiency using only a finite number of dimensions? An indefinite ordering ...
IBM is intensifying its research partnerships with the Indian Institute of Technology Bombay and the Indian Institute of ...
Delegating quantum computations previously demanded verifier resources that grew exponentially with circuit size. Now, ...
MTC Technology integrates SEALSQ’s QVault TPM183 for enhanced security in its new medical mouse featuring fingerprint access.
Entropy now offers a shortcut to assessing quantum error correction where previously only complex computation existed. This ...
Researchers at the Korea Advanced Institute of Science and Technology ( KAIST) have developed a signal processing method to ...
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