most citedHonest-binding quantum bit commitment from separable operations

1 citations · 1 across the 1 of their papers we have counts for

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6 papers

quant-ph20261 cited

Honest-binding quantum bit commitment from separable operations

Ziad Chaoui, Anna Pappa, Matteo Rosati

Bit commitment is a fundamental cryptographic primitive and a cornerstone for numerous two-party cryptographic protocols, including zero-knowledge proofs. However, it has been prov…

quant-ph2026

Unifying communication paradigms in measurement-based delegated quantum computing

Fabian Wiesner, Jens Eisert, Anna Pappa

Delegated quantum computing (DQC) allows clients with low quantum capabilities to outsource computations to a server hosting a quantum computer. This process is often envisioned wi…

quant-ph2025

Why quantum state verification cannot be both efficient and secure: a categorical approach

Fabian Wiesner, Ziad Chaoui, Diana Kessler +2

The advantage of quantum protocols lies in the inherent properties of the shared quantum states. These states are sometimes provided by sources that are not trusted, and therefore…

quant-ph2025

Why cut-and-choose quantum state verification cannot be both efficient and secure

Fabian Wiesner, Ziad Chaoui, Diana Kessler +2

Quantum state verification plays a vital role in many quantum cryptographic protocols, as it allows the use of quantum states from untrusted sources. While some progress has been m…

quant-ph2025

Anonymous and private parameter estimation in networks of quantum sensors

Jarn de Jong, Santiago Scheiner, Naomi R. Solomons +3

Anonymity and privacy are two key properties of modern communication networks. In quantum networks, distributed quantum sensing has emerged as a powerful use case, with application…

quant-ph2025

Distinguishing Graph States by the Properties of Their Marginals

Lina Vandré, Jarn de Jong, Frederik Hahn +3

Graph states are a class of multi-partite entangled quantum states that are ubiquitous in quantum information. We study equivalence relations between graph states under local unita…