Operational bounds on state exclusion (not only identification) plus a three-setting retained-key protocol certify positive SDI-QKD rates down to nearly vanishing preparation visibility.
Title resolution pending
6 Pith papers cite this work. Polarity classification is still indexing.
fields
quant-ph 6years
2026 6representative citing papers
Defines the prepare-and-broadcast scenario, builds classical/quantum/nonsignalling correlation hierarchies, proves collapse under shared randomness with one measurement per party, and shows nonclassicality activation with multiple measurements.
Experimental realization of a continuous-variable semi-device-independent QRNG with four-state coherent states and heterodyne detection, certifying 0.223 bits of Shannon entropy per measurement using an integrated photonic receiver.
Non-adaptive non-signaling assistance simulates quantum communication in PM scenarios with a classical dit replacing a qudit, while adaptive NS advantages are confined to single-setting receiver cases.
Introduces SDP hierarchies and qubit-specific joint-measurability techniques to certify coherence under hidden classical control, with applications to coherence-preserving channels.
A qubit sustains quantum advantage for arbitrarily many sequential receivers in 2-to-1 random access codes by balancing preparation distinguishability against measurement incompatibility.
citing papers explorer
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Semi-Device-Independent Quantum Key Distribution from Operational Assumptions
Operational bounds on state exclusion (not only identification) plus a three-setting retained-key protocol certify positive SDI-QKD rates down to nearly vanishing preparation visibility.
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The Prepare and Broadcast Scenario
Defines the prepare-and-broadcast scenario, builds classical/quantum/nonsignalling correlation hierarchies, proves collapse under shared randomness with one measurement per party, and shows nonclassicality activation with multiple measurements.
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Efficient Energy-Constrained Semi-Device-Independent QRNG with an Integrated Heterodyne Receiver
Experimental realization of a continuous-variable semi-device-independent QRNG with four-state coherent states and heterodyne detection, certifying 0.223 bits of Shannon entropy per measurement using an integrated photonic receiver.
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Non-signaling assistance in prepare-and-measure scenarios with classical communication
Non-adaptive non-signaling assistance simulates quantum communication in PM scenarios with a classical dit replacing a qudit, while adaptive NS advantages are confined to single-setting receiver cases.
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Certifying coherence in quantum devices under classical control
Introduces SDP hierarchies and qubit-specific joint-measurability techniques to certify coherence under hidden classical control, with applications to coherence-preserving channels.
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Unbounded Communication Power of a Qubit
A qubit sustains quantum advantage for arbitrarily many sequential receivers in 2-to-1 random access codes by balancing preparation distinguishability against measurement incompatibility.