Tightly characterises the secure region of the protocol depending on the loss and error rates
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Considers a generalisation where the input qubits are eigenstates of a $\mathbb{C}^2$ projector chosen uniformly at random. Shows that no finite-dimensional resource state can perfectly attack this protocol
Delves into some technical hardware details of a practical QPV implementation
Considers QPV in higher dimensions carefully and shows unconditional security in the random oracle model
Defines a new protocol based on the SWAP test and studies it theoretically and practically