collaborators

5 papers

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

Partially-Blind Single-Qubit Classification over a Prototype Hybrid Quantum Network

Matteo Pasini, Tzula Benjamin Propp, Janice van Dam +4

In the NISQ era, there is a need for resource-efficient proof-of-principle experiments that can be built up to genuine utility. Single-qubit classifiers (SQCs) are small-scale hybr…

quant-ph2026

Optimizing Resource Costs: A Practical Guide to Achieving Target Security in Verifiable Blind Quantum Computing

Janice van Dam, Michał van Hooft, Stephanie D. C. Wehner

Verifiable blind quantum computing (VBQC) enables a resource-limited client to securely delegate computations to an untrusted quantum server while maintaining privacy and detecting…

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…

quant-ph2025

Single-click protocols for remote state preparation using weak coherent pulses

Janice van Dam, Emil R. Hellebek, Tzula B. Propp +3

Remote state preparation (RSP) allows one party to remotely prepare a known quantum state on another party's qubit using entanglement. This can be used in quantum networks to perfo…