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User-Authenticated Device-Independent Quantum Secure Direct Communication Protocol
Nayana Das, Saikat Basu, Goutam Paul +1
Device-Independent Quantum Secure Direct Communication (DI-QSDC) enhances quantum cryptography by enabling secure message transmission without relying on the trustworthiness of the…
Device-Independent Quantum Secure Direct Communication with User Authentication
Nayana Das, Goutam Paul
Quantum Secure Direct Communication (QSDC) is an important branch of quantum cryptography, which enables the secure transmission of messages without prior key encryption. However,…
Measurement-Device-Independent Quantum Secure Direct Communication with User Authentication
Nayana Das, Goutam Paul
Quantum secure direct communication (QSDC) and deterministic secure quantum communication (DSQC) are two important branches of quantum cryptography, where one can transmit a secret…
Improving the Security of "Measurement-Device-Independent Quantum Communication without Encryption"
Nayana Das, Goutam Paul
Recently in 2018, Niu et al. proposed a measurement-device-independent quantum secure direct communication protocol using Einstein-Podolsky-Rosen pairs and generalized it to a quan…
Comment on "Quantum key agreement protocol"
Nayana Das, Ritajit Majumdar
The first two party Quantum Key Agreement (QKA) protocol, based on quantum teleportation, was proposed by Zhou et al. (Electronics Letters 40.18 (2004): 1149-1150). In this protoco…
Dimensionality Distinguishers
Nayana Das, Goutam Paul, Arpita Maitra
The celebrated Clauser, Horne, Shimony and Holt (CHSH) game model helps to perform the security analysis of many two-player quantum protocols. This game specifies two Boolean funct…