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The Global Market for Quantum Computing 2023-2043

  • Report

  • 300 Pages
  • March 2023
  • Region: Global
  • Future Markets, Inc
  • ID: 5743728

Quantum computing is still at an early stage, but the market is developing rapidly with public and private investment of over $40 billion to date. Large corporations, governments and start-ups are investing billions for what is expected to be a trillion dollar market within the report timeframe. 

Start-ups raised a total of $1.85 billion in 2022, up from $1.67 billion in 2021 with large-scale funding continuing into 2023, including:

  • Quantum Motion: £42 M
  • Quantum Brilliance: $18 M
  • PASQAL: €100 M
  • Welinq: €5 M
  • Quantum Machines: $20 M
  • Oxford Ionics: £30 M

Development of quantum computing will enable innovations in markets such as drug discovery, chemicals, supply chain management, financial services and telecommunications. As well as focusing on quantum computing, this report also covers related areas of quantum technologies including communications and sensing. 

Report contents include:

  • Analysis of quantum computing and related technologies. including hardware, software, cloud-based services, chemistry and AI for chemicals & biotech, quantum cryptography, quantum communications, and quantum sensing.
  • Market analysis of quantum computing in pharma, chemicals, automotive, financial services and other sectors.
  • Investment funding 2020-2023.
  • Industry developments 2020-2023. 
  • Market maps for quantum computing and quantum technologies.
  • Value chain.
  • Technology and market challenges. 
  • Global revenues 2023-2043. 
  • Profiles of 167 quantum computing and technologies companies. Companies profiled include Algorithmiq, Infleqtion, IonQ, Kipu Quantum, Multiverse Computing, Nu Quantum, Origin Quantum, Oxford Ionics, Oxford Quantum Circuits, Pasqal, Planqc, PsiQuantum,  Q-CTRL, QuantWare, Quantagonia, QuantrolOx, QuantrolOx, Quantum Bridge Technologies, Quantum Brilliance, Quantum Motion, Qunnect, SCALINQ, TuringQ and Welinq. 


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Table of Contents

1 RESEARCH METHODOLOGY

2 TERMS AND DEFINITIONS

3 TECHNICAL ANALYSIS
3.1 What is quantum computing?
3.1.1 Classical vs quantum computing
3.1.2 Quantum computing technology
3.1.3 Quantum algorithms
3.1.4 Hardware
3.1.5 Software
3.1.6 Cloud-based services
3.2 Quantum computers and processors
3.2.1 Superconducting qubits
3.2.1.1 Technology description
3.2.1.2 Market players
3.2.2 Optical qubits
3.2.2.1 Technology description
3.2.2.2 Market players
3.2.3 Neutral atom qubits
3.2.3.1 Technology description
3.2.3.2 Market players
3.2.4 Ion traps
3.2.4.1 Technology description
3.2.4.2 Market players
3.2.5 Silicon spin qubit
3.2.5.1 Technology description
3.2.5.2 Market players
3.2.6 Diamond-defect qubits
3.2.6.1 Technology description
3.2.6.2 Market players
3.2.7 Topological qubits
3.2.7.1 Technology description
3.2.7.2 Market players
3.2.8 Quantum annealers
3.2.8.1 Technology description
3.2.8.2 Market players
3.3 Quantum computing software
3.3.1.1 Technology description
3.3.1.2 Market players
3.4 Other crossover quantum technologies
3.4.1 Quantum chemistry and AI
3.4.1.1 Technology description
3.4.1.2 Applications
3.4.1.3 Market players
3.4.2 Quantum cryptography
3.4.2.1 Technology description
3.4.2.2 Applications
3.4.2.3 Market players
3.4.3 Quantum communications
3.4.3.1 Technology description
3.4.3.2 Applications
3.4.3.3 Market players
3.4.4 Quantum sensing
3.4.4.1 Technology description
3.4.4.2 Applications
3.4.4.3 Market players
3.5 Technical challenges

4 MARKET ANALYSIS
4.1 The market in 2023
4.2 Markets and applications for quantum computing
4.2.1 Pharmaceuticals
4.2.1.1 Market overview
4.2.1.2 Market players
4.2.2 Chemicals
4.2.2.1 Market overview
4.2.2.2 Market players
4.2.3 Automotive
4.2.3.1 Market overview
4.2.3.2 Market players
4.2.4 Financial services
4.2.4.1 Market overview
4.2.4.2 Market players
4.2.5 Other markets
4.3 Investment funding
4.4 Public funding of quantum computing, by country
4.5 Quantum computing market map
4.6 Quantum computing value chain
4.7 Technology readiness level
4.8 Industry developments 2020-2023
4.9 Market map for quantum technologies companies
4.10 Global market revenues, 2023-2043
4.11 Market challenges

5 COMPANY PROFILES (167 company profiles)

6 REFERENCES

List of Tables
Table 1. Classical vs quantum computing
Table 2. Superconducting qubit market players
Table 3. Optical qubit market players
Table 4. Neural atom qubit market players
Table 5. Ion traps market players
Table 6. Silicon spin qubits market players
Table 7. Diamond-defect qubits market players
Table 8. Topological qubit market players
Table 9. Quantum annealers market players
Table 10. Quantum computing software market players
Table 11. Applications in quantum chemistry and AI
Table 12. Market players in quantum chemistry and AI
Table 13. Applications in quantum cryptography
Table 14. Market players in quantum cryptography
Table 15. Applications in quantum communications
Table 16. Market players in quantum communications
Table 17. Applications in quantum sensors
Table 18. Market players in quantum sensors
Table 19. Technical challenges in quantum computing
Table 20. Markets and applications for quantum computing
Table 21. Market players in quantum computing for pharmaceuticals
Table 22. Market players in quantum computing for chemicals
Table 23. Market players in quantum computing for automotive
Table 24. Market players in quantum computing for financial services
Table 25. Other markets for quantum computing
Table 26. Quantum computing investment funding
Table 27. Public funding of quantum computing, by country
Table 28. Quantum computing industry developments 2020-2023
Table 29. Global market for quantum computing, various scenarios, 2023-2043 (billions USD)
Table 30. Global market for other quantum technologies, various scenarios, 2023-2043 (billions USD)
Table 31. Market challenges in quantum computing

List of Figures
Figure 1. Split-gate Transistor
Figure 2. Superconducting quantum computer
Figure 3. Neutral atoms (green dots) arranged in various configurations
Figure 4. Ion-trap quantum computer
Figure 5. Operating principle of RF Paul trap
Figure 6. CMOS silicon spin qubit
Figure 7. Silicon quantum dot qubits
Figure 8. D-Wave quantum annealer
Figure 9. Quantum computing investment funding 2010-2022
Figure 10. Quantum computing market map
Figure 11. Quantum computing value chain
Figure 12. Quantum computing TRL
Figure 13. Market map for quantum computing industry
Figure 14. Global market for quantum computing, various scenarios, 2023-2043 (billions USD)
Figure 15. Global market for other quantum technologies, various scenarios, 2023-2043 (billions USD)
Figure 16. IBM Q System One quantum computer

Companies Mentioned (Partial List)

A selection of companies mentioned in this report includes, but is not limited to:

  • 1Qbit
  • A Star Quantum
  • Abelian
  • Absensing
  • Adaptive Finance Technologies
  • Aegiq
  • Agnostiq
  • Algorithmiq
  • Alibaba
  • Alice&Bob
  • Aliro Quantum
  • Alpine Quantum Technologies GmbH (AQT)
  • Amazon
  • AngelQ
  • Anyon Systems Inc.
  • AQT
  • Arclight Quantum
  • Arqit Quantum Inc.
  • Atlantic Quantum
  • Atom Computing
  • Atos Quantum
  • Baidu, Inc.
  • BEIT
  • Bleximo
  • Bohr Quantum Technology
  • BosonQ Psi
  • C12 Quantum Electronics
  • Cambridge Quantum Computing (CQC)
  • CAS Cold Atom
  • CEW Systems Canada Inc.
  • Classiq Technologies
  • Delft Circuits
  • Dirac
  • Diraq
  • D-Wave Systems
  • EeroQ
  • eleQtron
  • Entangled Networks
  • Entropica Labs
  • EvolutionQ
  • Google
  • High Q Technologies Inc.
  • Horizon Quantum Computing
  • HQS Quantum Simulations
  • HRL
  • Huayi Quantum
  • IBM
  • Icosa Computing
  • ID Quantique
  • Infleqtion
  • Intel
  • IonQ
  • iPronics
  • IQM Quantum Computers
  • iXblue
  • JiJ
  • JoS QUANTUM GmbH
  • KETS Quantum Security
  • Kipu Quantum
  • Kiutra
  • Kuano
  • Lux Quanta
  • Maybell Quantum Industries
  • memQ
  • Menten AI
  • Microsoft
  • Molecular Quantum Solutions
  • Multiverse Computing
  • Muquans
  • Next Generation Quantum
  • Nord Quantique
  • Nordic Quantum Computing Group AS
  • Nu Quantum
  • OklahomaQuantum
  • ORCA Computing
  • Origin Quantum
  • Origin Quantum Computing Technology
  • OTI Lumionics
  • Oxford Ionics
  • Oxford Quantum Circuits
  • Pasqal
  • Peptone
  • Phasecraft
  • Photonic, Inc.
  • Planqc
  • Post Quantum
  • ProteinQure
  • PsiQuantum
  • Q-Bird
  • Qblox
  • QBoson
  • QC Ware
  • Q-CTRL
  • Qilimanjaro
  • Qnami
  • QNu Labs
  • QphoX
  • QpiAI Tech
  • Qrypt
  • QSimulate
  • Quandela
  • Quantagonia
  • Quantastica
  • Quantescence
  • QuantiCor Security
  • Quantinuum
  • QuantrolOx
  • Quantum Benchmark
  • Quantum Bridge Technologies
  • Quantum Brilliance
  • Quantum Computing Inc.
  • Quantum Delta NL
  • Quantum Diamond Technologies
  • Quantum Factory
  • Quantum Flytrap
  • Quantum Generative Materials
  • Quantum Machines
  • Quantum Motion Technology
  • Quantum Source
  • Quantum Xchange
  • QuantWare
  • Qubit Engineering Inc.
  • Qubit Pharmaceuticals
  • Qubitekk
  • QUDOOR
  • QuEra Computing
  • QuintessenceLabs
  • QuiX Quantum
  • Qunasys
  • Qunnect
  • QuSecure
  • Quside
  • QustomDot
  • Qutronix
  • Rigetti
  • Riverlane
  • Rockley Photonics
  • Sandbox AQ
  • SaxonQ
  • SBQuantum
  • SCALINQ
  • Seeqc
  • Silicon Quantum Computing
  • Siquance SAS
  • softwareQ
  • Sparrow Quantum SA
  • SpinQ Technology
  • Strangeworks, Inc.
  • Super.tech
  • sureCore
  • Synergy Quantum
  • t0.technology
  • Taqbit Labs
  • Terra Quantum
  • ThinkQuantum
  • Toshiba
  • TuringQ
  • Universal Quantum
  • Universal Quantum Devices
  • Wave Photonics
  • Welinq
  • Xanadu
  • XeedQ
  • Zapata Computing
  • Zhongwei Daxin Technology

Methodology

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