1 citations · 1 across the 4 of their papers we have counts for
5 papers
Graph-State Circuit Blocks control Entanglement and Scrambling Velocities
Chandana Rao, Himanshu Sahu, Aranya Bhattacharya +3
Random circuit models often describe local dynamics using generic two-qubit gates, which have proven successful in capturing entanglement growth and operator spreading in many cont…
Symplectic Lattices and GKP Codes -- Simple Randomized Constructions from Cryptographic Lattices
Johannes Blömer, Yinzi Xiao, Zahra Raissi +1
We construct good GKP (Gottesman-Kitaev-Preskill) codes (in the sense of Conrad, Eisert and Seifert proposed) from standard short integer solution lattices (SIS) as well as from ri…
Orbit classification and analysis of qutrit graph states under local complementation and local scaling
Konstantinos-Rafail Revis, Hrachya Zakaryan, Zahra Raissi
Graph states and their entanglement properties are pivotal for the development of quantum computing and technologies. For qubits, local complementation, a graphical rule that conne…
-Colorable Graph States: Closed-Form Expressions and Quantum Orthogonal Arrays
Konstantinos-Rafail Revis, Hrachya Zakaryan, Zahra Raissi
Graph states are a fundamental class of multipartite entangled quantum states with wide-ranging applications in quantum information and computation. In this work, we develop a syst…
Non-symmetric GHZ states: weighted hypergraph and controlled-unitary graph representations
Hrachya Zakaryan, Konstantinos-Rafail Revis, Zahra Raissi
Non-symmetric GHZ states (-GHZ), defined by unequal superpositions of and , naturally emerge in experiments due to decoherence, control errors, and stat…