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Quantum Computing Market & Technologies. Asia-Pacific – 2018-2024

Hurtling Headlong Towards Quantum Era. 24.5% Regional Market CAGR

  • February 2018
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University of Waterloo
Toshiba
University of NSW
Samsung Electronics
Recruit
Mitsubishi Electric
KUKA
KRISS
Fujitsu
API Technologies
HP
Amazon
Sandia National Lab
HITACHI
Thales

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Description

According to the “Quantum Computing Market & Technologies. Asia-Pacific – 2018-2024” report, the regional Quantum Computing market* will grow at a CAGR of 24.5% throughout 2018-2024. During 2017 Quantum Computing technologies performance has increased at an impressive rate; we forecast that 2018-2019 will experience a surge of breakthroughs.

The Asia-Pacific region, and particularly China, is hurtling headlong towards the quantum era, placing its bets on the disruptive, even revolutionary potential of quantum technology. The recent breakthroughs in China have been preceded and enabled by long-term efforts and investments in quantum information science, all enthusiastically backed at the highest levels of Chinese leadership. As a result, Chinese scientists have succeeded in progressing towards the operationalization and commercialization of unhackable quantum communications, while seeking supremacy in quantum computing and concurrently progressing in quantum sensing.

China allocates extensive funding to basic and applied research. Consequently, Chinese advances in quantum information science have the potential to surpass the United States. Once operationalized, quantum technologies will also have transformative implications for China’s national security and economy. As the U.S. has sustained a leading position in the international affairs due in part to its technological, military, and economic preeminence, it is critical to take swift action to reverse this trend and once again place the U.S. as a frontrunner in emerging technologies like quantum information science.

The fierce competition at the national industrial and academic level is leading to a race for quantum supremacy. The competitors are all worthy of respect, especially because they are striving for supremacy not just over each other, but over a problem so big and so complex, that anybody’s success is everybody’s success.
China defense and national security are likely to be early adopters of quantum computing. There are applications for secure communications, interception, enhanced navigation and sensing. These uses add to fears of a China “big brother society”. Changes in the quantum computing capacities of China could have implications for geopolitics.

According to the “Quantum Computing Market & Technologies. Asia-Pacific – 2018-2024” report, the regional Quantum Computing market* will grow at a CAGR of 24.5% throughout 2018-2024. During 2017 Quantum Computing technologies performance has increased at an impressive rate; we forecast that 2018-2019 will experience a surge of breakthroughs.

The 282-page report is a comprehensive review of the APAC quantum computing market available today. This report is a valuable resource for executives with interests in the market. It has been explicitly customized for ICT industry managers, investors and government decision-makers to enable them to identify business opportunities, emerging applications, market trends and risks, as well as to benchmark business plans.

Questions answered in this report include:

  • What was the Asia-Pacific quantum computing market size by 2016 & 2017?
  • What will the Asia-Pacific quantum computing market size and trends be during 2018-2024?
  • Which are the quantum computing submarkets that provide attractive business opportunities?
  • What drives Asia-Pacific customers to purchase quantum computing solutions and services?
  • What are the quantum computer applications & services trends?
  • What are the Asia-Pacific market SWOT (Strengths, Weaknesses, Opportunities and Threats)?
  • What are the challenges to the quantum computing market penetration & growth?
  • Who are the industry players?
  • How and where to invest in quantum computing industry?

Asia-Pacific Quantum Computing Technologies & Market

Global Quantum Computing Market Vectors

 

With 282 pages and 66 tables & figures, this report covers 6 national markets, 4 revenue sources and 5 sectoral markets, offering for each of the submarkets 2016-2017 assessments and 2018-2024 forecasts and analyses.

According to the Quantum Computing Market & Technologies – 2018-2024report, the global market* will grow at a CAGR of 24.6% throughout 2018-2024. During 2017 Quantum Computing technologies performance has increased at an impressive rate; we forecast that 2018-2019 will experience a surge of breakthroughs.

(*) Including: product & services sales and government-funded research, development, testing and evaluation (RDT&E)

Why Buy This Report?

A. The Asia-Pacific Market is analyzed via 3 independent key perspectives.
With a highly fragmented market we address the “money trail” – each dollar spent is analyzed and crosschecked via 3 orthogonal viewpoints:

1] By 6 national markets:

  1. India
  2. China
  3. Japan
  4. Singapore
  5. Australia
  6. Rest of Asia Pacific

2] By 4 sectors:

  1. National Security
  2. Government
  3. Government-Funded RDT&E
  4. Industry & Business Sectors

3] By 4 revenue sources

  1. Systems Sales
  2. Quantum Software Sales
  3. Quantum Computing as a Service
  4. Government Funded RDT&E

B. A Detailed market analysis framework includes:

  1. Business Opportunities
  2. SWOT Analysis
  3. Competitive Analysis
  4. Business Environment

C. 41 Quantum Computing Bids, and Projects Data are provided

D. The report includes the following appendices:

Appendix A: Introduction to Quantum Computing
Appendix B: Quantum Information Technologies
Appendix C: Quantum Computing Hardware
Appendix D: Quantum Computing Software
Appendix E: Quantum Encryption
Appendix F: Global 50 Top Supercomputers
Appendix G: Industry Investment in Quantum Computing – 2006-2016
Appendix H: NQIT R&D Projects
Appendix I: Exascale Computing
Appendix J: Market Background by Country
Appendix K: Key Quantum Computing Patents
Appendix L: Links to 31 Quantum Computing Academic Research Centers
Appendix M: Quantum Conferences Links
Appendix N: Glossary
Appendix O: References

E. The report includes over 300 links to the Quantum Computing community information sources

F. The report provides an updated extensive data of the leading 55 Quantum Computing companies:

1Qbit
Agilent Technologies
Aifotec AG
Airbus Group
Alcatel-Lucent
Alibaba Group Holding Limited
Anyon Systems, Inc
Artiste-qb.net
Avago Technologies
Booz Allen Hamilton
British Telecommunications (BT)
Cambridge Quantum Computing
Ciena Corporation
Cyoptics
D Wave Systems Inc
Eagle Power Technologies, Inc
Entanglement Partners
Emcore Corporation
Enablence Technologies
Finisar Corporation
Fuijitsu Limited
Google Quantum AI Lab
H-Bar Quantum Consultants
Hewlett Packard Enterprise Company
IBM
Infinera Corporation
Intel Corporation
ID Quantique

IonQ
JDS Uniphase Corporation
Kaiam Corporation
Lockheed Martin Corp.
MagiQ Technologies, Inc.
Microsoft Quantum Architectures and
Computation Group (QuArC)
Mitsubishi Electric Corp.
NEC
Nokia Bell Labs
NTT Basic Research Laboratories and
NTT Secure Platform Laboratories
Post-Quantum
QbitLogic
QC Ware Corp.
Quantum Circuits
Quantum Hardware Inc
Qubitekk
QxBranch
Quintessence Labs
Raytheon BBN
Rigetti Computing
SeQureNet
SK Telecom
Sparrow Quantum
Toshiba
Xanadu

Table of Contents

Download TOC as PDF


Quantum Computing Market & Technologies. Asia-Pacific – 2018-2024

1 Executive Summary
1.1 Major Findings & Conclusions
1.2 Asia-Pacific Quantum Computing Market – 2016-2024
1.2.1 Asia-Pacific Quantum Computing Market by Sector
1.2.2 Asia-Pacific Quantum Computing Market by Revenue Source
   
  MARKET BACKGROUND & ANALYSIS
2 Quantum Computing Market Background
2.1 The Global Information Technology (IT) Market
2.2 Quantum Computing
2.3 Why Are Quantum Computers Attractive?
2.4 Quantum Computing Outlook
2.5 Quantum Supremacy
2.6 Quantum Technologies Timeline
2.7 Investments in Quantum Computing
2.8 Quantum Computing Technology Roadmap
2.9 Topological Quantum Computers
2.1 The 2nd Quantum Revolution
2.11 Applications of Quantum Computing
2.12 The Private Sector Quantum Computing R&D Activities
2.13 The Global Quantum Computing Race
2.14 China – U.S. Quantum Information Leadership Race
3 Quantum Information Bids, Tenders and Projects Data
4 SWOT Analysis
4.1 Strengths
4.2 Weaknesses
4.3 Opportunities
4.4 Threats
5 Quantum Computing Value Chain
6 Quantum Computing Vertical Markets
6.1 Defense & Intelligence Quantum Computing Market
6.1.1 National Security Intelligence
6.1.2 Defense
6.2 Homeland Security & Public Safety Quantum Computing Market
6.2.1 Public Safety
6.2.2 Homeland Security
6.3 Government & Public Services Quantum Computing Market
6.4 Gov.-Funded RDT&E Quantum Computing Market
6.5 Banking & Securities Quantum Computing Market
6.6 Manufacturing & Logistics Quantum Computing Market
6.7 Insurance Quantum Computing Market
6.8 Healthcare & Pharmaceutical Quantum Computing Market
6.8.1 Overview
6.8.2 Medical Diagnostics Quantum Computing Market Background
6.8.3 Medical Treatments Quantum Computing Market Background
6.8.4 Example: Combating Cancer
6.8.5 The Folding@home Project
6.8.6 Pharmacology Quantum Computing
6.8.7 Protein Folding Quantum Computing Market Background
6.9 Retail & Wholesale Quantum Computing Market
6.1 Information Technology Industry Quantum Computing Market
6.11 Telecommunications Quantum Computing Market
6.12 Automotive, Aerospace & Transportation Quantum Computing Market
6.13 Energy & Utilities Quantum Computing Market
6.14 Web, Media & Entertainment Quantum Computing Market
6.15 Smart Cities Quantum Computing Market
6.16 Cybersecurity Quantum Computing Market
   
  REGIONAL MARKET
7 Asia-Pacific Quantum Computing Markets – 2018-2024
7.1 Asia-Pacific Quantum Computing Market by Sector
7.1.1 Market Forecast – 2016-2024
7.1.2 Market Dynamics – 2016-2024
7.1.3 Market Breakdown – 2016-2024
7.2 Asia-Pacific Quantum Computing Market by Revenue Source
7.2.1 Market Forecast – 2016-2024
7.2.2 Market Dynamics – 2016-2024
7.2.3 Market Breakdown – 2016-2024
   
  NATIONAL MARKETS
8 India Quantum Computing Market – 2018-2024
8.1 India Market Background
8.2 India Quantum Computing Market Background
8.3 India Quantum Computing Market – 2016-2024
8.3.1 Market Forecast – 2016-2024
8.3.2 Market Dynamics – 2016-2024
9 China Quantum Computing Market – 2018-2024
9.1 .China Market Background
9.2 China Quantum Computing Market Background
9.2.1 Quantum Information in China
9.2.2 Government-Funded RDT&E
9.2.3 Made in China 2025 Program
9.2.4 Chinese Quantum Computing Advances
9.2.5 PRC’s Quantum Cryptography and Communications
9.2.6 PRC Quantum Sensing Programs
9.2.7 China-U.S. Quantum Information Race
9.2.8 Limitations of the U.S. Quantum Information Programs
9.2.9 U.S. Vs. Chinese Intellectual property (IP) Race
9.2.10 China Supercomputing Lead
9.3 China Quantum Computing Market – 2016-2024
9.3.1 Market Forecast – 2016-2024
9.3.2 Market Dynamics – 2016-2024
10 Japan Quantum Computing Market – 2018-2024
10.1 Japan Market Background
10.2 Japan Quantum Computing Activities
10.3 Japan Quantum Computing Market – 2016-2024
10.3.1 Market Forecast – 2016-2024
10.3.2 Market Dynamics – 2016-2024
11 Singapore Quantum Computing Market – 2018-2024
11.1 Singapore Market Background
11.2 Singapore Quantum Computing Activities
11.3 Singapore Quantum Computing Market – 2016-2024
11.3.1 Market Forecast – 2016-2024
11.3.2 Market Dynamics – 2016-2024
12 Australia Quantum Computing Market – 2018-2024
12.1 Australia Market Background
12.2 Australia Quantum Computing Activities
12.3 Australia Quantum Computing Market – 2016-2024
12.3.1 Market Forecast – 2016-2024
12.3.2 Market Dynamics – 2016-2024
13 Rest of Asia Pacific Quantum Computing Market – 2018-2024
13.1 Market Forecast – 2016-2024
13.2 Market Dynamics – 2016-2024
   
  COMPANIES & BUSINESS OPPORTUNITIES
14 Business Opportunities
14.1 Quantum Computing Business Opportunities Roadmap
14.2 Machine Learning
14.3 Search Engines
14.4 Business Intelligence
14.5 Software/Hardware Validation and Verification
14.6 Image and Pattern Recognition
14.7 National Security Intelligence
14.8 Defense
14.9 Public Safety
14.1 Homeland Security
14.11 Government & Public Services
14.12 Banking & Financial Services
14.13 Financial Electronic Trading & Trading Strategies
14.14 Smart Manufacturing & Logistics
14.15 Mission Planning/Scheduling and Logistics
14.16 Insurance
14.17 Medical Diagnostics
14.18 Medical Treatments
14.19 Pharmacology
14.2 Protein Folding
14.21 Retail & Wholesale
14.22 Information Technology Industry
14.23 Telecommunication
14.24 Automotive & Transportation
14.25 Aerospace
14.26 Energy & Utilities
14.27 Energy Systems & Photovoltaics
14.28 Energy Exploration
14.29 Web, Media & Entertainment
14.3 Smart Cities
14.31 Cybersecurity
14.32 Quantum Computing Systems
14.33 Quantum Computing Software
14.34 Quantum Computing as a Service on the Cloud
14.35 Academia & National Labs
14.36 Graph Theory Problems
14.37 Material Science
14.38 Marine Science
14.39 Bioinformatics
14.4 Climate Modeling & Weather Predictions
14.41 Seismic Survey
14.42 Risk Management
14.43 Simulation
14.44 Video Compression
14.45 Cryptography
14.45.1 Quantum Cryptography
14.45.2 Post-quantum Cryptography
14.46 QC Based Optimization Problems
14.46.1 Optimization Problems
14.46.2 Quantum-Assisted Optimization
14.46.3 Reservoir Optimization Applications
14.46.4 Utilities Management Optimization
14.47 Quantum Computing Based Machine Learning
14.47.1 Quantum Machine Learning
14.47.2 Quantum Reinforcement Learning
14.48 Big Data & Predictive Analytics
14.49 Material Science
14.5 Quantum Sampling
14.51 Quantum Chemistry
14.52 Monte Carlo Simulation
15 Moore’s Law Outlook
16 Quantum Computing Startups
17 Quantum Computing Companies
17.1 1Qbit
17.1.1 Company Profile
17.1.2 Quantum Computing Activities
17.2 Agilent Technologies
17.2.1 Company Profile
17.2.2 Quantum Computing Activities
17.3 Aifotec AG
17.3.1 Company Profile
17.3.2 Quantum Computing Activities
17.4 Airbus Group
17.4.1 Company Profile
17.4.2 Quantum Computing Activities
17.5 Alcatel-Lucent
17.5.1 Company Profile
17.5.2 Quantum Computing Activities
17.6 Alibaba Group Holding Limited
17.6.1 Company Profile
17.6.2 Quantum Computing Activities
17.7 Anyon Systems, Inc
17.7.1 Company Profile
17.7.2 Quantum Computing Activities
17.8 Artiste-qb.net
17.8.1 Company Profile
17.8.2 Quantum Computing Activities
17.9 Avago Technologies
17.1 Booz Allen Hamilton
17.10.1 Company Profile
17.10.2 Quantum Computing Activities
17.11 British Telecommunications (BT)
17.11.1 Company Profile
17.11.2 Quantum Computing Activities
17.12 Cambridge Quantum Computing Limited
17.12.1 Company Profile
17.12.2 Quantum Computing Activities
17.13 Ciena Corporation
17.13.1 Company Profile
17.13.2 Quantum Computing Activities
17.14 Cyoptics
17.14.1 Company Profile
17.14.2 Quantum Computing Activities
17.15 D-Wave Systems Inc
17.15.1 Company Overview
17.15.2 Quantum Computing Activities
17.16 Eagle Power Technologies, Inc
17.16.1 Company Profile
17.16.2 Quantum Computing Activities
17.17 Emcore Corporation
17.17.1 Company Profile
17.17.2 Quantum Computing Activities
17.18 Enablence Technologies
17.18.1 Company Profile
17.18.2 Quantum Computing Activities
17.19 Entanglement Partners
17.2 Fathom Computing
17.20.1 Company Profile
17.20.2 Quantum Computing Activities
17.21 Finisar Corporation
17.22 Fujitsu Limited
17.22.1 Company Profile
17.22.2 Quantum Computing Activities
17.23 Google Quantum AI Lab
17.23.1 Company Profile
17.23.2 Quantum Computing Activities
17.24 H-Bar Quantum Consultants
17.25 Hewlett Packard Enterprise Company
17.25.1 Company Profile
17.25.2 Quantum Computing Activities
17.26 IBM
17.26.1 Company Profile
17.26.2 Quantum Computing Activities
17.27 ID Quantique
17.27.1 Company Profile
17.27.2 Quantum Computing Activities
17.28 Infinera Corporation
17.28.1 Company Profile
17.28.2 Quantum Computing Activities
17.29 Intel Corp.
17.29.1 Company Profile
17.29.2 Quantum Computing Activities
17.3 IonQ
17.30.1 Company Profile
17.30.2 Quantum Computing Activities
17.31 JDS Uniphase Corporation
17.32 Kaiam Corporation
17.32.1 Company Profile
17.32.2 Quantum Computing Activities
17.33 Lockheed Martin Corp.
17.33.1 Company Profile
17.33.2 Quantum Computing Activities
17.34 MagiQ Technologies, Inc.
17.34.1 Company Profile
17.34.2 Quantum Computing Activities
17.35 Microsoft Quantum Architectures and Computation Group (QuArC)
17.35.1 Company Profile
17.35.2 Quantum Computing Activities
17.36 Mitsubishi Electric Corp.
17.36.1 Company Profile
17.36.2 Quantum Computing Activities
17.37 NEC
17.37.1 Company Profile
17.37.2 Quantum Computing Activities
17.38 Nokia Bell Labs
17.38.1 Company Profile
17.38.2 Quantum Computing Activities
17.39 NTT Basic Research Laboratories & NTT Secure Platform Laboratories
17.39.1 Company Profile
17.39.2 Quantum Computing Activities
17.4 Optalysys Ltd.
17.40.1 Company Profile
17.40.2 Quantum Computing Activities
17.41 Post-Quantum
17.41.1 Company Profile
17.41.2 Quantum Computing Activities
17.42 QbitLogic
17.42.1 Company Profile
17.42.2 Quantum Computing Activities
17.43 QC Ware Corp.
17.43.1 Company Profile
17.43.2 Quantum Computing Activities
17.44 Quantum Circuits
17.44.1 Company Profile
17.45 Quantum Hardware Inc
17.45.1 Company Profile
17.45.2 Quantum Computing Activities
17.46 QuantumCTek
17.46.1 Company Profile
17.46.2 Quantum Computing Activities
17.47 Qubitekk
17.47.1 Company Profile
17.47.2 Quantum Computing Activities
17.48 Quintessence Labs
17.48.1 Company Profile
17.48.2 Quantum Computing Activities
17.49 QxBranch
17.5 Raytheon BBN
17.50.1 Company Profile
17.50.2 Quantum Computing Activities
17.51 Rigetti Computing
17.51.1 Company Profile
17.51.2 Quantum Computing Activities
17.52 SeQureNet
17.53 SK Telecom
17.53.1 Company Profile
17.53.2 Quantum Computing Activities
17.54 Sparrow Quantum
17.54.1 Company Profile
17.54.2 Quantum Computing Activities
17.55 Toshiba
17.55.1 Company Profile
17.55.2 Quantum Computing Activities
17.56 Xanadu
   
  APPENDICES
18 Appendix A: Introduction to Quantum Computing
18.1.1 Superposition
18.1.2 Entanglement
18.1.2.1 Ion-based Qubits
18.1.2.2 Superconducting Qubits
18.1.2.3 Solid-State Spin Qubits
19 Appendix B: Quantum Information Technologies
19.1 Quantum information
19.2 Shared Principles
19.3 Quantum Computing
19.4 Quantum Cryptography:
19.5 Quantum Sensing
20 Appendix C: Quantum Computing Hardware
21 Appendix D: Quantum Computing Software
21.1 Introduction to Quantum Algorithms
22 Appendix E: Quantum Encryption
22.1 Background
22.2 Key Findings
22.3 Spooks Reacting at a Distance
23 Appendix F: Global 50 Top Supercomputers
24 Appendix G: Industry Investment in Quantum Computing – 2006-2016
25 Appendix H: NQIT R&D Projects
25.1 Background
25.2 Architectures, Standards and Systems Integration
25.3 Ion Trap Node Engineering
25.4 Atom-photon Interfaces
25.5 Photonic Network Engineering
25.6 Solid State Node Engineering
25.7 Secure Communications and Verification
25.8 Networked Quantum Sensors
25.9 Quantum Digital Simulation
25.1 Hybrid Classical/Quantum Computing
25.11 Capabilities and Support
26 Appendix I: Exascale Computing
26.1 Exascale Computing Definition
26.2 U.S. Exascale Computing Activities
26.3 China Exascale Computing Activities
26.4 EU Exascale Computing Activities
26.5 Japan Exascale Computing Activities
26.6 India Exascale Computing Activities
26.7 Exascale Computing Challenges
27 Appendix J: Market Background by Country
27.1 Australia Market Background
27.1.1 Facts & Figures
27.1.2 Australia Geopolitical Overview
27.1.3 Australia Economy
27.1.3.1 External Security
27.1.4 Australia Defense, Intelligence, Law Enforcement & Homeland Security Agencies
27.1.5 Australia – Police Forces
27.1.6 Australia Intelligent Services
27.2 China Market Background
27.2.1 Facts & Figures
27.2.2 China Geopolitical Background
27.2.3 China Economy
27.2.4 China Defense, Intelligence, Law Enforcement & Homeland Security Agencies
27.2.5 China Police
27.2.6 China Ministry of Public Security
27.2.7 Public Security Bureau
27.2.8 China Ministry of State Security
27.2.9 China Defense Forces
27.3 Japan Market Background
27.3.1 Facts & Figures
27.3.2 Japan Geopolitical Background
27.3.3 Japan Economy
27.3.4 Japan Defense, Intelligence, Law Enforcement & Homeland Security Agencies
27.3.5 Japan Police Forces
27.3.6 Japan Defense Forces
27.4 India Market Background
27.4.1 Facts & Figures
27.4.2 India Geopolitical Overview
27.4.3 India Economy
27.4.4 India Defense, Intelligence, Law Enforcement & Homeland Security Agencies
27.4.5 Indian Police Forces
27.4.6 India Defense Market
27.4.7 India Defense Forces
27.5 Singapore Market Background
27.5.1 Facts & Figures
27.5.2 Singapore Geopolitical Overview
27.5.3 Singapore Economy
27.5.4 Singapore Police
27.5.5 Singapore Defense Forces
28 Appendix K: Key Quantum Computing Patents
28.1 Patents List
28.2 Quantum Computing Patent Filing by Country
29 Appendix L: Links to 31 Quantum Computing Academic Research Centers
30 Appendix M: 2017 Quantum Conferences Links –
31 Appendix N: Glossary
32 Appendix O: References
   
33 Scope & Methodology
33.1 Research Scope
33.2 Research Methodology
34 Disclaimer & Copyright

Tables

[Click here for Figures]


Quantum Computing Market & Technologies. Asia-Pacific – 2018-2024

Table 1 Asia-Pacific Quantum Computing Market [$M] by Sector – 2016-2024
Table 2 Asia-Pacific Quantum Computing Market AGRs [%] by Sector – 2016-2024
Table 3 Asia-Pacific Quantum Computing Market [$M] by Revenue Source – 2016-2024
Table 4 Asia-Pacific Quantum Computing Market AGRs [%] by Revenue Source – 2016-2024
Table 5 The Global IT Market [$B] & Market Share [%] By Revenue Source – 2017
Table 6 Global IT Market Share [%] By Region – 2016
Table 7 Global IT Market [$B] By Industry – 2016
Table 8 Quantum Computing Investment by Investor
Table 9 Quantum Information 2014-2017 Bids, Tenders and Projects
Table 10 Government-Funded RDT&E by Country – 2016
Table 11 Asia-Pacific Quantum Computing Market [$M] by Sector – 2016-2024
Table 12 Asia-Pacific Quantum Computing Market AGRs [%] by Sector – 2016-2024
Table 13 Asia-Pacific Quantum Computing Market [$M] by Revenue Source – 2016-2024
Table 14 Asia-Pacific Quantum Computing Market AGRs [%] by Revenue Source – 2016-2024
Table 15 India Quantum Computing Market [$M] – 2016-2024
Table 16 India Quantum Computing Market AGRs [%] – 2016-2024
Table 17 China Quantum Computing Market [$M] – 2016-2024
Table 18 China Quantum Computing Market AGRs [%] – 2016-2024
Table 19 Japan Quantum Computing Market [$M] – 2016-2024
Table 20 Japan Quantum Computing Market AGRs [%] – 2016-2024
Table 21 Singapore Quantum Computing Market [$M] – 2016-2024
Table 22 Singapore Quantum Computing Market AGRs [%] – 2016-2024
Table 23 Australia Quantum Computing Market [$M] – 2016-2024
Table 24 Australia Quantum Computing Market AGRs [%] – 2016-2024
Table 25 Rest of Asia Pacific Quantum Computing Market [$M] – 2016-2024
Table 26 Rest of Asia Pacific Quantum Computing Market AGRs [%] – 2016-2024
Table 27 Startup Quantum Computing Companies
Table 28 Commercial Investment in Quantum Computing – 2006-2016

Figures


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Quantum Computing Market & Technologies. Asia-Pacific – 2018-2024

Figure 1 Quantum Computing Applications Organogram
Figure 2 Asia-Pacific Quantum Computing Market [$M] by Sector – 2016-2024
Figure 3 Asia-Pacific Quantum Computing Market Shares [%] by Sector – 2016-2024
Figure 4 Asia-Pacific Quantum Computing Market [$M] by Revenue Source – 2016-2024
Figure 5 Asia-Pacific Quantum Computing Market Shares [%] by Revenue Source – 2016-2024
Figure 6 Three Types of Quantum Computing and Applications
Figure 7 TNO Quantum Technologies Timeline Outlook – 2015-2035
Figure 8 Quantum Computing Technology Roadmap
Figure 9 Applications of Quantum Computing
Figure 10 Leading IT Companies and Defense Contractors Investing in Quantum Computing
Figure 11 Leading Quantum Computing Companies Technology Approaches
Figure 12 Quantum Computing, Patent Applications by Country to 2015
Figure 13 Quantum Patent Applications Timeline 2000-2015
Figure 14 QC Promises to Aerospace Activities
Figure 15 Asia-Pacific Quantum Computing Market [$M] by Sector – 2016-2024
Figure 16 Asia-Pacific Quantum Computing Market Shares [%] by Sector – 2016-2024
Figure 17 Asia-Pacific Quantum Computing Market [$M] by Revenue Source – 2016-2024
Figure 18 Asia-Pacific Quantum Computing Market Shares [%] by Revenue Source – 2016-2024
Figure 19 India Quantum Computing Market [$M] – 2016-2024
Figure 20 China Quantum Computing, Patent Applications Status
Figure 21 China Quantum Patent Applications Timeline Vs. The U.S. Japan, Europe & Korea
Figure 22 China Quantum Computing Market [$M] – 2016-2024
Figure 23 Japan Quantum Computing Market [$M] – 2016-2024
Figure 24 Singapore Quantum Computing Market [$M] – 2016-2024
Figure 25 Australia Quantum Computing Market [$M] – 2016-2024
Figure 26 Rest of Asia Pacific Quantum Computing Market [$M] – 2016-2024
Figure 27 Quantum Computing Business Opportunities Roadmap
Figure 28 Quantum Computing Investor – Company Relationship
Figure 29 Qubit Explanation
Figure 30 Quantum Entanglement
Figure 31 Control Systems for the Ion-Trap System
Figure 32 Australia Defense, Intelligence, Law Enforcement & Homeland Security Agencies Organogram
Figure 33 The IMF 2010-2030 Forecast: China GDP vs. Other Nations GDP
Figure 34 China Defense, Intelligence, Law Enforcement & Homeland Security Agencies Organogram
Figure 35 Japan Defense, Intelligence, Law Enforcement & Homeland Security Agencies Organogram
Figure 36 India Defense, Intelligence, Law Enforcement & Homeland Security Agencies Organogram
Figure 37 Quantum Computing, Quantum Cryptography and Sensors Quantum Patent Applications by Country 2000 to 2015
Figure 38 Patent Applications by Country – 2000-2015

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