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Superconducting Quantum Computing Market

完整報告名稱與涵蓋範圍
Superconducting Quantum Computing Market Size, Share & Trends Analysis Report, By Offering (Quantum Hardware Systems, Control Electronics and Components, Software and Development Tools, Cloud Access and Professional Services), By Application (Optimization, Molecular and Materials Simulation, Quantum Machine Learning, Cryptanalysis and Security Research), By End User (Financial Services, Chemicals and Pharmaceuticals, Aerospace and Defense, Academic and Government Research), By Region, and Segment Forecasts, 2026-2035

報告摘要

Superconducting quantum computing exploits Josephson-junction circuits, most commonly transmon and fluxonium qubits, operated at millikelvin temperatures and manipulated with microwave pulses. This market covers full quantum computing systems built on superconducting processors, the control electronics and cryogenic wiring that scale them, software stacks and development tools, and access delivered through cloud platforms, consortium arrangements and professional services engagements. Momentum stems from the platform's fast gate operations and its compatibility with established microfabrication techniques, which together underpin the most aggressive roadmaps toward error-corrected logical qubits. Demonstrations of quantum error correction crossing break-even thresholds have converted corporate interest into multi-year procurement of on-premise systems by national laboratories and supercomputing centres seeking hybrid classical-quantum workflows. Sovereign technology programs in the United States, Europe, Japan, South Korea and China finance both flagship installations and component supply chains, while banks, chemical companies and aerospace primes fund exploratory application work through cloud credits and co-development agreements. North America retains leadership through hyperscaler research groups and venture-backed processor developers, while Finland, Germany and the United Kingdom anchor a dense European ecosystem and Japan pairs domestic system builders with university consortia. The competitive field couples deep-pocketed technology majors with specialised startups differentiating on qubit quality, error-correction architectures and modular scaling. The InsightAce study presents revenue forecasts in US$ across offering, application, end-user and regional segments for 2026-2035, with segment-level trend analysis, competitive landscape assessment and company profiling.

授權報價

Single User$4,500 USD
Enterprise / Global Site Licence$9,500 USD

目錄 Table of Contents

Chapter 1. Methodology and Scope 1.1. Research Methodology 1.2. Research Scope & Assumptions Chapter 2. Executive Summary Chapter 3. Global Superconducting Quantum Computing Market Snapshot Chapter 4. Global Superconducting Quantum Computing Market Variables, Trends & Scope 4.1. Market Segmentation & Scope 4.2. Market Drivers 4.3. Market Challenges 4.4. Emerging Trends 4.5. Investment and Funding Analysis 4.6. Industry Analysis - Porter's Five Forces Analysis 4.7. Competitive Landscape and Market Positioning 4.8. Market Opportunity Analysis Chapter 5. Market Segmentation 1: By Offering Estimates & Trend Analysis 5.1. Offering & Market Share, 2026 & 2035 5.2. Market Size (Value US$ Mn) & Forecasts and Trend Analysis, 2026 to 2035, by Offering: 5.2.1. Quantum Hardware Systems 5.2.2. Control Electronics and Components 5.2.3. Software and Development Tools 5.2.4. Cloud Access and Professional Services Chapter 6. Market Segmentation 2: By Application Estimates & Trend Analysis 6.1. Application & Market Share, 2026 & 2035 6.2. Market Size (Value US$ Mn) & Forecasts and Trend Analysis, 2026 to 2035, by Application: 6.2.1. Optimization 6.2.2. Molecular and Materials Simulation 6.2.3. Quantum Machine Learning 6.2.4. Cryptanalysis and Security Research Chapter 7. Market Segmentation 3: By End User Estimates & Trend Analysis 7.1. End User & Market Share, 2026 & 2035 7.2. Market Size (Value US$ Mn) & Forecasts and Trend Analysis, 2026 to 2035, by End User: 7.2.1. Financial Services 7.2.2. Chemicals and Pharmaceuticals 7.2.3. Aerospace and Defense 7.2.4. Academic and Government Research Chapter 8. Superconducting Quantum Computing Market: Regional Estimates & Trend Analysis 8.1. North America 8.1.1. United States 8.1.2. Canada 8.2. Europe 8.2.1. Germany 8.2.2. United Kingdom 8.2.3. France 8.2.4. Italy 8.2.5. Spain 8.2.6. Rest of Europe 8.3. Asia Pacific 8.3.1. China 8.3.2. Japan 8.3.3. India 8.3.4. South Korea 8.3.5. Australia 8.3.6. Southeast Asia 8.3.7. Rest of Asia Pacific 8.4. Latin America 8.4.1. Brazil 8.4.2. Mexico 8.4.3. Rest of Latin America 8.5. Middle East & Africa 8.5.1. GCC Countries 8.5.2. South Africa 8.5.3. Rest of Middle East & Africa Chapter 9. Competitive Landscape 9.1. Company Market Positioning Analysis 9.2. Strategic Developments (Partnerships, Expansions, Product Launches, M&A) Chapter 10. Company Profiles 10.1. IBM Corporation 10.2. Google Quantum AI (Alphabet Inc.) 10.3. Rigetti Computing, Inc. 10.4. D-Wave Quantum Inc. 10.5. IQM Quantum Computers 10.6. Oxford Quantum Circuits Ltd. 10.7. Fujitsu Limited 10.8. NEC Corporation 10.9. SEEQC, Inc. 10.10. Alice & Bob 10.11. Anyon Systems Inc. 10.12. Quantum Circuits, Inc. 10.13. Nord Quantique

圖表清單 List of Tables & Figures

Table 1. Global Superconducting Quantum Computing Market Revenue Forecast by Offering, 2026-2035 (US$ Mn) Figure 1. Global Superconducting Quantum Computing Market Segmentation and Scope Overview Table 2. Global Superconducting Quantum Computing Market Revenue Forecast by Application, 2026-2035 (US$ Mn) Figure 2. Global Superconducting Quantum Computing Market Share by Offering, 2026 & 2035 Table 3. Global Superconducting Quantum Computing Market Revenue Forecast by End User, 2026-2035 (US$ Mn) Figure 3. Global Superconducting Quantum Computing Market Share by Application, 2026 & 2035 Table 4. Global Superconducting Quantum Computing Market Revenue Forecast by Region, 2026-2035 (US$ Mn) Figure 4. Superconducting Qubit Roadmaps Toward Error-Corrected Logical Qubits Table 5. North America Superconducting Quantum Computing Market Revenue by Country, 2026-2035 (US$ Mn) Figure 5. National Quantum Program Funding Landscape by Country Table 6. Europe Superconducting Quantum Computing Market Revenue by Country, 2026-2035 (US$ Mn) Figure 6. Asia Pacific Superconducting Quantum Computing Market Growth Opportunity Analysis Table 7. Asia Pacific Superconducting Quantum Computing Market Revenue by Country, 2026-2035 (US$ Mn) Figure 7. Competitive Positioning of Key Superconducting Quantum Computing Market Participants Table 8. System Installations and Partnerships of Leading Superconducting Quantum Vendors, 2023-2026 Figure 8. Porter's Five Forces Analysis of the Global Superconducting Quantum Computing Market

提及公司

IBM CorporationGoogle Quantum AI (Alphabet Inc.)Rigetti Computing, Inc.D-Wave Quantum Inc.IQM Quantum ComputersOxford Quantum Circuits Ltd.Fujitsu LimitedNEC CorporationSEEQC, Inc.Alice & BobAnyon Systems Inc.Quantum Circuits, Inc.Nord Quantique

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