collaborators

8 papers

quant-ph2026

A Dynamic Multiplexing Policy for a Quantum Repeater

Jeroen Grimbergen, Sounak Kar, Michal van Hooft +2

We consider a multiplexed quantum repeater that distributes entanglement between two end nodes. Multiplexing is achieved through optical integration of many quantum chips. Each chi…

quant-ph2026

Verifiable blind quantum computing: Comparative analysis and design considerations for client architectures

Janice van Dam, Jeroen Grimbergen, Stephanie D. C. Wehner

Blind quantum computing (BQC) allows a client to delegate quantum computations to a remote server without revealing the input, computation, or output. In addition to being blind, t…

quant-ph2026

Quantum Advantage for Coordinated Frequency Selection Against Distributed Jammers

Stephanie Wehner

Consider two parties who want to agree on a common frequency band for communication in the presence of independent jammers. Such jammers block a different subset of bands at each s…

quant-ph2026

Remotely Preparing Many Qubits with a Single Photon

Tzula B. Propp, Benedikt Tissot, Anders S. Sørensen +1

A single photon in a superposition of modes naturally encode a -dimensional quantum system, a so-called qudit. We show that such superpositions can be leveraged to achieve a…

quant-ph2026

Probabilistic Cutoffs in Homogeneous Quantum Repeater Chains

Jeroen Grimbergen, Stav Haldar, Alvaro Gomez Inesta +1

We study quantum repeater chains in which entangled links between neighbouring nodes are created through heralded entanglement generation and adjacent links are swapped as soon as…

quant-ph2026

Quantum Strategies to Overcome Classical Multiplexing Limits

Tzula B. Propp, Jeroen Grimbergen, Emil R. Hellebek +5

Near-term quantum networks face a bottleneck due to low quantum communication rates. This degrades performance both by lowering operating speeds and increasing qubit storage time i…