Simulation Study of Single Quantum Channel BB84 Quantum Key Distribution

被引:0
作者
Foong, Oi-Mean [1 ]
Low, Tang Jung [1 ]
Hong, Kah Wing [1 ]
机构
[1] Univ Teknol PETRONAS, Comp & Informat Sci Dept, Bandar Seri Iskandar 31750, Tronoh, Malaysia
来源
IT CONVERGENCE AND SECURITY 2017, VOL 2 | 2018年 / 450卷
关键词
Quantum Key Distribution; BB84; Cryptosystem; QBER; Raw key efficiencies; COMPUTERS; CRYPTOGRAPHY; SECURITY;
D O I
10.1007/978-981-10-6454-8_21
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
With the increasing information being shared online, the vast potential for cybercrime is a serious issue for individuals and businesses. Quantum key distribution (QKD) provides a way for distribution of secure key between two communicating parties. However, the current Quantum Key Distribution method, BB84 protocol, is prone to several weaknesses. These are Photon-Number-Splitting (PNS) attack, high Quantum Bit Error Rate (QBER), and low raw key efficiency. Thus, the objectives of this paper are to investigate the impacts of BB84 protocol towards QBER and raw key efficiencies in single quantum channel. Experiments were set up using a QKD simulator that was developed in Java NetBeans. The simulation study has reaffirmed the results of QBER and raw key efficiencies for the single quantum channel BB84 protocol.
引用
收藏
页码:159 / 167
页数:9
相关论文
共 50 条
[21]   Key rate for calibration robust entanglement based BB84 quantum key distribution protocol [J].
Gittsovich, O. ;
Moroder, T. .
ELEVENTH INTERNATIONAL CONFERENCE ON QUANTUM COMMUNICATION, MEASUREMENT AND COMPUTATION (QCMC), 2014, 1633 :156-158
[22]   Thwarting the photon number splitting attack with entanglement enhanced BB84 quantum key distribution [J].
Sabottke, Carl F. ;
Richardson, Chris D. ;
Anisimov, Petr M. ;
Yurtsever, Ulvi ;
Lamas-Linares, Antia ;
Dowling, Jonathan P. .
QUANTUM INFORMATION AND COMPUTATION X, 2012, 8400
[23]   PRACTICAL QUANTUM KEY AGREEMENT PROTOCOL BASED ON BB84 [J].
Wang, Ping ;
Zhang, R. ;
Sun, Zhiwei .
QUANTUM INFORMATION & COMPUTATION, 2022, 22 (3-4) :241-250
[24]   Dispersion Supported BB84 Quantum Key Distribution Using Phase Modulated Light [J].
Mora, J. ;
Ruiz-Alba, A. ;
Amaya, W. ;
Capmany, J. .
IEEE PHOTONICS JOURNAL, 2011, 3 (03) :433-440
[25]   Homodyne detection for quantum key distribution: an alternative to photon counting in BB84 protocol [J].
Costa e Silva, M. B. ;
Xu, Q. ;
Agnolini, S. ;
Gallion, P. ;
Mendieta, F. J. .
PHOTONICS NORTH 2006, PTS 1 AND 2, 2006, 6343
[26]   EFFICIENCY OF THE QUANTUM KEY DISTRIBUTION SYSTEMS - A COMPARATIVE STUDY OF BB84 PROTOCOL WITH ITS IMPROVED VERSIONS [J].
Zisu, Liliana .
PROCEEDINGS OF THE ROMANIAN ACADEMY SERIES A-MATHEMATICS PHYSICS TECHNICAL SCIENCES INFORMATION SCIENCE, 2020, 21 (01) :85-91
[27]   Optimum design for BB84 quantum key distribution in tree-type passive optical networks [J].
Capmany, Jose ;
Fernandez-Pousa, Carlos R. .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2010, 27 (06) :A146-A151
[28]   Benefits of using Heralded Single Photon Source for Fiber-Based Quantum Key Distribution BB84 [J].
Gueddana, Amor ;
Attia, Moez ;
Chatta, Rihab .
2013 10TH INTERNATIONAL CONFERENCE ON HIGH CAPACITY OPTICAL NETWORKS AND ENABLING TECHNOLOGIES (HONET-CNS), 2013, :32-36
[29]   BB84 quantum key distribution transmitter utilising broadband sources and a narrow spectral filter [J].
Noblet, Yoann ;
Donaldson, Ross .
OPTICS EXPRESS, 2023, 31 (09) :15145-15155
[30]   Demonstrating BB84 Quantum Key Distribution in the Physical Layer of an Optical Fiber Based System [J].
Czermann, Marton ;
Trocsanyi, Peter ;
Kis, Zsolt ;
Kovacs, Benedek ;
Bacsardi, Laszlo .
INFOCOMMUNICATIONS JOURNAL, 2021, 13 (03) :45-55