5 papers
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…
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…
Optimizing Resource Costs: A Practical Guide to Achieving Target Security in Verifiable Blind Quantum Computing
Janice van Dam, MichaÅ 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…
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…
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…