Sima Bahrani

Sima Bahrani

University of Bristol

H-index: 9

Europe-United Kingdom

About Sima Bahrani

Sima Bahrani, With an exceptional h-index of 9 and a recent h-index of 8 (since 2020), a distinguished researcher at University of Bristol, specializes in the field of Optical Communications, Quantum Communications.

His recent articles reflect a diverse array of research interests and contributions to the field:

Optimum switching scenario analysis in a dynamic entanglement network

Entanglement distribution quantum networking within deployed telecommunications fibre-optic infrastructure

A study of polarization compensation for quantum networks

Satellite-Based Quantum Key Distribution in the Presence of Bypass Channels

Field trial of a dynamically switched quantum network supporting co-existence of entanglement, prepare-and-measure QKD and classical channels

QKD-Secured and Dynamic Multi-tenant O-RAN 5G Fronthaul with Quantum and Classical Channels Co-existence

Polarisation Based Entanglement Distribution Quantum Networking

FPGA-based Deterministic and Low-Latency Control for Distributed Quantum Computing

Sima Bahrani Information

University

Position

Postdoctoral Researcher

Citations(all)

318

Citations(since 2020)

241

Cited By

151

hIndex(all)

9

hIndex(since 2020)

8

i10Index(all)

7

i10Index(since 2020)

6

Email

University Profile Page

Google Scholar

Sima Bahrani Skills & Research Interests

Optical Communications

Quantum Communications

Top articles of Sima Bahrani

Optimum switching scenario analysis in a dynamic entanglement network

2023/3/5

Entanglement distribution quantum networking within deployed telecommunications fibre-optic infrastructure

2023/1/11

A study of polarization compensation for quantum networks

EPJ quantum technology

2023/12/1

Satellite-Based Quantum Key Distribution in the Presence of Bypass Channels

PRX Quantum

2023/11/1

Field trial of a dynamically switched quantum network supporting co-existence of entanglement, prepare-and-measure QKD and classical channels

2023/10/1

QKD-Secured and Dynamic Multi-tenant O-RAN 5G Fronthaul with Quantum and Classical Channels Co-existence

2023/7/3

Polarisation Based Entanglement Distribution Quantum Networking

2023/5/22

FPGA-based Deterministic and Low-Latency Control for Distributed Quantum Computing

2023/5/20

Analysing the Effect of Quantum Network Interconnect on the Performance of Distributed Quantum Computing

2023/3/5

Realistic Threat Models for Satellite-Based Quantum Key Distribution

2022/12/9

Towards a fully connected many-user entanglement distribution quantum network within deployed telecommunications fibre-optic infrastructure

2022/9/23

Dv-qkd coexistence with 1.6 terabit/s classical channels in free space using fiber-wireless-fiber terminals

2022/9/18

Polarization compensation methods for quantum communication networks

arXiv preprint arXiv:2208.13584

2022/8/29

Dv-qkd coexistence with 1.6 tbps classical channels over hollow core fibre

Journal of Lightwave Technology

2022/8/15

Benchmarking of quantum protocols

Scientific Reports

2022/3/28

A dynamic multi-protocol entanglement distribution quantum network

2022/3/6

See List of Professors in Sima Bahrani University(University of Bristol)