activity
20162026
most citedDeterministic generation of qudit photonic graph states from quantum emitters

16 citations · 32 across the 4 of their papers we have counts for

collaborators

10 papers

quant-ph2026

Equi-Entropic Maps for Four-Partite Quantum States

Wojciech Bruzda, Zahra Raissi

Absolutely maximally entangled states represent a highly constrained form of multipartite entanglement and play an important role in quantum information theory. We investigate a we…

quant-ph2022★ 16 cited

Deterministic generation of qudit photonic graph states from quantum emitters

Zahra Raissi, Edwin Barnes, Sophia E. Economou

We propose and analyze deterministic protocols to generate qudit photonic graph states from quantum emitters. We show that our approach can be applied to generate any qudit graph s…

quant-ph2022★ 12 cited

Extracting perfect GHZ states from imperfect weighted graph states via entanglement concentration

Rafail Frantzeskakis, Chenxu Liu, Zahra Raissi +2

Photonic GHZ states serve as the central resource for a number of important applications in quantum information science, including secret sharing, sensing, and fusion-based quantum…

quant-ph2021

General stabilizer approach for constructing highly entangled graph states

Zahra Raissi, Adam Burchardt, Edwin Barnes

Highly entangled multipartite states such as k-uniform (k-UNI) and absolutely maximally entangled (AME) states serve as critical resources in quantum networking and other quantum i…

quant-ph2020

Modifying method of constructing quantum codes from highly entangled states

Zahra Raissi

There is a connection between classical codes, highly entangled pure states (called k-uniform or absolutely maximally entangled (AME) states), and quantum error correcting codes (Q…

quant-ph2020

Stochastic Local Operations with Classical Communication of Absolutely Maximally Entangled States

Adam Burchardt, Zahra Raissi

Absolutely Maximally Entangled (AME) states are maximally entangled for every bipartition of the system. They are crucial resources for various quantum information protocols. We pr…