Author: kimworrall
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Prepare-and-Send Verifiable Universal Blind Quantum Computation
implements Secure Verifiable Client-Server Delegated Quantum Computation Introduction Thus protocol implements the functionality of Secure Verifiable Delegated Quantum Computation which enables a client with limited quantum technology to delegate a computation to an untrusted but powerful quantum server in such a manner, where the privacy of the computation is maintained. This protocol introduces verifiability as…
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Pseudo-Secret Random Qubit Generator (PSQRG)
implements Secure Client-Server Delegated Computation Introduction The example protocol[1] enables fully-classical parties to generate secret single qubit states using only public classical channels and a single quantum Server. This functionality could be used to replace a quantum channel completely such that a classical Client can perform various quantum applications over classical network connected to a…
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Prepare-and-Send Universal Blind Quantum Computation
implements Secure Client-Server Delegated Computation Introduction Universal blind quantum computation achieves the functionality of Secure Client- Server Delegated Quantum Computation by assigning quantum computation to an untrusted device while maintaining privacy of the input, output and computation of the client. The client requires to be able to prepare and send quantum states while the server…
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Prepare-and-Send Quantum Fully Homomorphic Encryption
implements Secure Client-Server Delegated Computation Introduction This example protocol achieves the functionality of Secure Client- Server Delegated Computation by a method which involves quantum offline and classical offline communication, called Quantum Fully Homomorphic Encryption (QFHE). Offline communication means there is exchange of information is not required throughout the protocol but only once at the start…
