Vaishnavi L. Addala

dblp:352/6862 · DBLP profile ↗
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1ranked-venue papers
0as first author
1since 2021 · last 2024
0009-0009-6928-3567ORCID · reported

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 1 · 1 since 2021

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Theoretical computer science
1 paper
Quantum computing and quantum information · 75% Coding theory · 25%

Topics — the 4 heaviest of 4, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Quantum computing and quantum information › quantum entanglement
entanglement distillation
0.812024
Near-Term n to k Distillation Protocols Using Graph Codes · IEEE J. Sel. Areas Commun. 2024
Coding theory › error-correcting codes
graph-based codes
0.812024
Near-Term n to k Distillation Protocols Using Graph Codes · IEEE J. Sel. Areas Commun. 2024
Quantum computing and quantum information
quantum error correction
0.812024
Near-Term n to k Distillation Protocols Using Graph Codes · IEEE J. Sel. Areas Commun. 2024
Quantum computing and quantum information
quantum network
0.812024
Near-Term n to k Distillation Protocols Using Graph Codes · IEEE J. Sel. Areas Commun. 2024

Methods — techniques the papers use, named apart from their topics

circuit optimization · 0.8bilocal clifford operations · 0.8
YearPublicationVenuePosition
2024 Near-Term n to k Distillation Protocols Using Graph Codes
abstract
Noisy hardware forms one of the main hurdles to the realization of a near-term quantum internet. Distillation protocols allows one to overcome this noise at the cost of an increased overhead. We consider here an experimentally relevant class of distillation protocols, which distillntokend-to-end entangled pairs using bilocal Clifford operations, a single round of communication and a possible final local operation depending on the observed measurement outcomes. In the case of permutationally invariant depolarizing noise on the input states, we find a correspondence between these distillation protocols and graph codes. We leverage this correspondence to find provably optimal distillation protocols in this class for several tasks important for the quantum internet. This correspondence allows us to investigate use cases for so-called non-trivial measurement syndromes. Furthermore, we detail a recipe to construct the circuit used for the distillation protocol given a graph code. We use this to find circuits of short depth and small number of two-qubit gates. Additionally, we develop a black-box circuit optimization algorithm, and find that both approaches yield comparable circuits. Finally, we investigate the teleportation of encoded states and find protocols which jointly improve the rate and fidelities with respect to prior art.
Kenneth Goodenough, Sébastian de Bone, Vaishnavi L. Addala, Stefan Krastanov, Sarah Jansen, Dion Gijswijt, David Elkouss
IEEE J. Sel. Areas Commun.3