Semi-quantum protocols construct connections between quantum users and ``classical'' users who can only perform certain ``classical'' operations. In this paper, we present a new semi-quantum private comparison protocol based on entangled states and single particles, which does not require pre-shared keys between the ``classical'' users to guarantee the security of their private data. By utilizing multi-particle entangled states and single particles, our protocol can be easily extended to multi-party scenarios to meet the requirements of multiple ``classical'' users who want to compare their private data. The security analysis shows that the protocol can effectively prevent attacks from outside eavesdroppers and adversarial participants. Bes...
In this paper, a lightweight three-user secure quantum summation protocol is put forward by using si...
In this paper, we harness the potential offered by multidimensional states in secure communication w...
In this paper, we design a new quantum key distribution protocol, al-lowing two limited semi-quantum...
In this paper, we successfully design the semi-quantum private comparison (SQPC) protocol with the m...
Semi-quantum private comparison (SQPC) enables two classical users with limited quantum capabilities...
In this paper, a novel semiquantum private comparison (SQPC) protocol based on single kind of Bell s...
In this paper, we propose a novel semiquantum private comparison (SQPC) protocol based on Bell state...
In this paper, we propose a novel semiquantum private comparison (SQPC) protocol of size relationshi...
Two quantum key agreement protocols using Bell states and Bell measurement were recently proposed by...
In this paper, we propose two semi-quantum dialogue (SQD) protocols by using single photons as the q...
In this paper, a three-party secure semiquantum summation protocol, which can calculate the modulo 2...
Mediated semi-quantum key distribution involves the use of two end-users who have very restricted, a...
In this paper, a semiquantum secret sharing (SQSS) protocol based on x-type states is proposed, whic...
In this paper, we propose a novel two-party semiquantum key distribution (SQKD) protocol by only emp...
In this paper, a multi-party quantum private comparison (MQPC) scheme is suggested based on entangle...
In this paper, a lightweight three-user secure quantum summation protocol is put forward by using si...
In this paper, we harness the potential offered by multidimensional states in secure communication w...
In this paper, we design a new quantum key distribution protocol, al-lowing two limited semi-quantum...
In this paper, we successfully design the semi-quantum private comparison (SQPC) protocol with the m...
Semi-quantum private comparison (SQPC) enables two classical users with limited quantum capabilities...
In this paper, a novel semiquantum private comparison (SQPC) protocol based on single kind of Bell s...
In this paper, we propose a novel semiquantum private comparison (SQPC) protocol based on Bell state...
In this paper, we propose a novel semiquantum private comparison (SQPC) protocol of size relationshi...
Two quantum key agreement protocols using Bell states and Bell measurement were recently proposed by...
In this paper, we propose two semi-quantum dialogue (SQD) protocols by using single photons as the q...
In this paper, a three-party secure semiquantum summation protocol, which can calculate the modulo 2...
Mediated semi-quantum key distribution involves the use of two end-users who have very restricted, a...
In this paper, a semiquantum secret sharing (SQSS) protocol based on x-type states is proposed, whic...
In this paper, we propose a novel two-party semiquantum key distribution (SQKD) protocol by only emp...
In this paper, a multi-party quantum private comparison (MQPC) scheme is suggested based on entangle...
In this paper, a lightweight three-user secure quantum summation protocol is put forward by using si...
In this paper, we harness the potential offered by multidimensional states in secure communication w...
In this paper, we design a new quantum key distribution protocol, al-lowing two limited semi-quantum...