activity
20242026
collaborators

6 papers

quant-ph2026

Quantum Repeater Protocol using Quantum Error Correction for Distillation

Ashlesha Patil, Michele Pacenti, Bane Vasić +2

Bell-state measurement (BSM) on entangled states shared between quantum repeaters is the fundamental operation used to route entanglement in quantum networks. Performing BSMs on We…

quant-ph2025

Measurement-Based Entanglement Distillation and Constant-Rate Quantum Repeaters over Arbitrary Distances

Yu Shi, Ashlesha Patil, Saikat Guha

Measurement-based quantum repeaters employ entanglement distillation and swapping across links using locally prepared resource states of minimal size and local Bell measurements. I…

quant-ph2025

Entanglement Routing over Networks with Time Multiplexed Repeaters

Emily A Van Milligen, Eliana Jacobson, Ashlesha Patil +3

Quantum networks will be able to service consumers with long-distance entanglement by use of quantum repeaters that generate Bell pairs (or links) with their neighbors, iid with pr…

quant-ph2025

Comparison of schemes for highly loss tolerant photonic fusion based quantum computing

Sara Bartolucci, Tom Bell, Hector Bombin +18

We summarize the performance of recently-proposed methods for achieving fault tolerant fusions-based quantum computation with high tolerance to qubit loss, specifically aimed at ph…

quant-ph2025

Stabilizer Entanglement Distillation and Efficient Fault-Tolerant Encoders

Yu Shi, Ashlesha Patil, Saikat Guha

Entanglement is essential for quantum information processing, but is limited by noise. We address this by developing high-yield entanglement distillation protocols with several adv…

quant-ph2024

Resource-efficient loss-aware photonic graph state preparation using atomic emitters

Eneet Kaur, Ashlesha Patil, Saikat Guha

Multi-qubit entangled photonic graph states are an important ingredient for all-photonic quantum computing, repeaters and networking. Preparing them using probabilistic stitching o…