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20052011
most citedMinimal-memory, non-catastrophic, polynomial-depth quantum convolutional encoders

14 citations · 30 across the 4 of their papers we have counts for

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5 papers

quant-ph2011★ 14 cited

Minimal-memory, non-catastrophic, polynomial-depth quantum convolutional encoders

Monireh Houshmand, Saied Hosseini-Khayat, Mark M. Wilde

Quantum convolutional coding is a technique for encoding a stream of quantum information before transmitting it over a noisy quantum channel. Two important goals in the design of q…

quant-ph2010★ 4 cited

Examples of minimal-memory, non-catastrophic quantum convolutional encoders

Mark M. Wilde, Monireh Houshmand, Saied Hosseini-Khayat

One of the most important open questions in the theory of quantum convolutional coding is to determine a minimal-memory, non-catastrophic, polynomial-depth convolutional encoder fo…

quant-ph2010★ 8 cited

Minimal-memory realization of pearl-necklace encoders of general quantum convolutional codes

Monireh Houshmand, Saied Hosseini-Khayat

Quantum convolutional codes, like their classical counterparts, promise to offer higher error correction performance than block codes of equivalent encoding complexity, and are exp…

quant-ph2010★ 4 cited

Minimal memory requirements for pearl-necklace encoders of quantum convolutional codes

Monireh Houshmand, Saied Hosseini-Khayat, Mark M. Wilde

One of the major goals in quantum information processing is to reduce the overhead associated with the practical implementation of quantum protocols, and often, routines for quantu…

quant-ph2005

Secure Communication Using Qubits

Saied Hosseini-Khayat, Iman Marvian

A two-layer quantum protocol for secure transmission of data using qubits is presented. The protocol is an improvement over the BB84 QKD protocol. BB84, in conjunction with the one…