Measurement Device Independent Quantum Digital Signature (MDI-QDS): Difference between revisions

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**'''Measurement:'''Arbitrator, if honest, performs Bell measurement on the received states. If the measurement is successful, Bell state is communicated by arbitrator over public channel.
**'''Measurement:'''Arbitrator, if honest, performs Bell measurement on the received states. If the measurement is successful, Bell state is communicated by arbitrator over public channel.
**'''Sifting:'''Seller and buyer/verifier exchange the information regarding the intensity and basis used to prepare states, in case of successful Bell measurement. These states are grouped into two sets, depending on the basis used for preparation. The above steps are repeated until the cardinality of both sets is more than required threshold number of elements for each set. In the end, Buyer/Verifier flips part of his bits according to the [[Measurement Device Independent Quantum Digital Signature (MDI-QDS)#Pseudo Code|Pseudo code]] given below.  
**'''Sifting:'''Seller and buyer/verifier exchange the information regarding the intensity and basis used to prepare states, in case of successful Bell measurement. These states are grouped into two sets, depending on the basis used for preparation. The above steps are repeated until the cardinality of both sets is more than required threshold number of elements for each set. In the end, Buyer/Verifier flips part of his bits according to the [[Measurement Device Independent Quantum Digital Signature (MDI-QDS)#Pseudo Code|Pseudo code]] given below.  
**'''Parameter Estimation:'''
**'''Parameter Estimation:'''  
*'''Symmetrisation:''' Buyer and Verifier exchange half of their randomly chosen eliminated signature elements. This prevents a dishonest seller succeed in cheating by sending dissimilar public keys to the receiver and makes the protocol secure against repudiation. Thus ends the distribution phase.
*'''Symmetrisation:''' Buyer and Verifier exchange half of their randomly chosen eliminated signature elements. This prevents a dishonest seller succeed in cheating by sending dissimilar public keys to the receiver and makes the protocol secure against repudiation. Thus ends the distribution phase.
Similarly, Messaging Phase is divided into the following steps:
Similarly, Messaging Phase is divided into the following steps:
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