Integration of Quantum Technologies into Metaverse: Applications, Potentials, and Challenges

被引:8
作者
Tuli, Esmot Ara [1 ]
Lee, Jae-Min [1 ]
Kim, Dong-Seong [1 ]
机构
[1] Kumoh Natl Inst Technol, Dept IT Convergence Engn, Networked Syst Lab, Gumi 39177, South Korea
关键词
Quantum computing; Metaverse; Computers; Surveys; Artificial intelligence; Security; Blockchains; Quantum mechanics; blockchain; metaverse; quantum computing; security; BLIND SIGNATURE SCHEME; POST-QUANTUM; HEALTH-CARE; BLOCKCHAIN; AUTHENTICATION; SECURITY; GATES;
D O I
10.1109/ACCESS.2024.3366527
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Over the last few decades, technology has been improving dramatically and consequently transformed the standard of living and socio-economic conditions. The entire process will revolutionize when the next advanced technologies will be fully functional. Advanced technologies like the metaverse, Web 3.0, and others necessitate high computing power, invincible security, and ultra-fast internet. Despite increasing demand, traditional computing methods have limitations and are not capable of satisfying the requirements. To solve these tribulations, quantum computing is shining a light of hope. This survey aims to analyze the methodology, constraints, and potential of integrating quantum computing with the metaverse. We begin with an overview of quantum computing and related terms. We then investigate the feasibility of applying quantum-enabled technologies to enhance the metaverse. Furthermore, this survey also considers middleware for seamless conversion between traditional and quantum computing with the metaverse. In the subsequent phase of this survey, our objective is to discern and delineate the prospective application domains for the quantum-enabled metaverse. In essence, the difficulties of integrating quantum computing with the metaverse, present research approaches, and open research issues with consequences for additional in-depth investigations are highlighted.
引用
收藏
页码:29995 / 30019
页数:25
相关论文
共 213 条
[1]  
A. Lab, Pioneering Quantum Computing in R&D
[2]   Application of Quantum Natural Language Processing for Language Translation [J].
Abbaszade, Mina ;
Salari, Vahid ;
Mousavi, Seyed Shahin ;
Zomorodi, Mariam ;
Zhou, Xujuan .
IEEE ACCESS, 2021, 9 :130434-130448
[3]   Quantum-Assisted Blockchain [J].
Ablayev, F. M. ;
Bulychkov, D. A. ;
Sapaev, D. A. ;
Vasiliev, A. V. ;
Ziatdinov, M. T. .
LOBACHEVSKII JOURNAL OF MATHEMATICS, 2018, 39 (07) :957-960
[4]  
Accenture, Enter a New Era of Digital Change
[5]   Quantum computing for energy systems optimization: Challenges and opportunities [J].
Ajagekar, Akshay ;
You, Fengqi .
ENERGY, 2019, 179 :76-89
[6]   Quantum Text Encoding for Classification Tasks [J].
Alexander, Aaranya ;
Widdows, Dominic .
2022 IEEE/ACM 7TH SYMPOSIUM ON EDGE COMPUTING (SEC 2022), 2022, :355-361
[7]   Quantum Computer Systems for Scientific Discovery [J].
Alexeev, Yuri ;
Bacon, Dave ;
Brown, Kenneth R. ;
Calderbank, Robert ;
Carr, Lincoln D. ;
Chong, Frederic T. ;
DeMarco, Brian ;
Englund, Dirk ;
Farhi, Edward ;
Fefferman, Bill ;
Gorshkov, Alexey, V ;
Houck, Andrew ;
Kim, Jungsang ;
Kimmel, Shelby ;
Lange, Michael ;
Lloyd, Seth ;
Lukin, Mikhail D. ;
Maslov, Dmitri ;
Maunz, Peter ;
Monroe, Christopher ;
Preskill, John ;
Roetteler, Martin ;
Savage, Martin J. ;
Thompson, Jeff .
PRX QUANTUM, 2021, 2 (01)
[8]  
Almudever CG, 2020, DES AUT TEST EUROPE, P864, DOI 10.23919/DATE48585.2020.9116240
[9]   Integrating Digital Twin and Advanced Intelligent Technologies to Realize the Metaverse [J].
Aloqaily, Moayad ;
Bouachir, Ouns ;
Karray, Fakhri ;
Al Ridhawi, Ismaeel ;
El Saddik, Abdulmotaleb .
IEEE CONSUMER ELECTRONICS MAGAZINE, 2023, 12 (06) :47-55
[10]  
Amani F., 2023, P IEEE TEX POW EN C, P1