시장보고서
상품코드
2030899

AI용 양자 컴퓨팅 시장(2026-2030년)

Global Quantum Computing For AI Market 2026-2030

발행일: | 리서치사: 구분자 TechNavio | 페이지 정보: 영문 316 Pages | 배송안내 : 즉시배송

    
    
    




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※ 본 상품은 영문 자료로 한글과 영문 목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문 목차를 참고해주시기 바랍니다.

세계의 AI용 양자 컴퓨팅 시장은 2025년부터 2030년까지 7억 2,860만 달러 증가하고, 예측 기간 동안 CAGR은 33.9%에 달할 것으로 예측됩니다.

세계의 AI용 양자 컴퓨팅 시장에 대해 조사 분석했으며, 시장 규모와 예측, 동향, 성장 촉진요인, 과제, 약 25개 벤더 분석 등의 정보를 전해드립니다.

이 보고서는 현재 시장 상황, 최신 동향 및 촉진요인, 그리고 전체 시장 환경에 대한 최신 분석을 제공합니다. 이 시장은 AI 모델의 복잡성과 훈련 수요의 급격한 증가, 고급 예측 분석에 대한 전례 없는 수요, 하이브리드 양자 및 고전 인프라에 대한 투자 및 전략적 제휴의 확대에 의해 주도되고 있습니다.

이번 조사는 업계 주요 관계자들의 의견을 포함한 1차 정보와 2차 정보를 객관적으로 조합하여 실시되었습니다. 이 보고서에는 주요 기업 분석과 함께 종합적인 시장 규모 데이터, 지역별 분석과 함께 부문 및 공급업체 현황이 포함되어 있습니다. 보고서에는 과거 데이터와 예측 데이터가 수록되어 있습니다.

시장 범위
기준 연도 2025년
종료 연도 2030년
조사 대상 기간 2026-2030년
성장 모멘텀 가속
2026년 전년 대비 28.2%
CAGR 33.9%
증가액 7억 2,860만 달러

이 보고서는 ml 워크로드의 급격한 증가와 고급 컴퓨팅 패러다임의 필요성이 향후 몇 년 동안 세계 AI용 양자 컴퓨팅 시장의 성장을 주도할 주요 요인 중 하나로 꼽았습니다. 또한, 양자 인프라에 대한 정부의 노력과 민간 부문의 자금 지원의 전략적 시너지 효과, 하이브리드 알고리즘 개발 및 양자 오류 수정 방법의 혁신은 시장에서 상당한 수요를 창출할 것입니다.

목차

제1장 주요 요약

제2장 Technavio 분석

제3장 시장 구도

제4장 시장 규모

제5장 시장 규모 실적

제6장 정성 분석

제7장 Five Forces 분석

제8장 시장 세분화 : 기술별

제9장 시장 세분화 : 전개별

제10장 시장 세분화 : 최종사용자별

제11장 고객 상황

제12장 지역별 상황

제13장 촉진요인, 과제, 기회

제14장 경쟁 구도

제15장 경쟁 분석

제16장 부록

KSM 26.05.26

The global quantum computing for ai market is forecasted to grow by USD 728.6 mn during 2025-2030, accelerating at a CAGR of 33.9% during the forecast period. The report on the global quantum computing for ai market provides a holistic analysis, market size and forecast, trends, growth drivers, and challenges, as well as vendor analysis covering around 25 vendors.

The report offers an up-to-date analysis regarding the current market scenario, the latest trends and drivers, and the overall market environment. The market is driven by exponential growth in ai model complexity and training demands, unprecedented demand for advanced predictive analytics, increasing investments and strategic partnerships in hybrid quantum-classical infrastructure.

The study was conducted using an objective combination of primary and secondary information including inputs from key participants in the industry. The report contains a comprehensive market size data, segment with regional analysis and vendor landscape in addition to an analysis of the key companies. Reports have historic and forecast data.

Market Scope
Base Year2025
End Year2030
Series Year2026-2030
Growth MomentumAccelerate
YOY 202628.2%
CAGR33.9%
Incremental Value$728.6 mn

Technavio's global quantum computing for ai market is segmented as below:

By Technology

  • Superconducting qubits
  • Trapped ions
  • Photonic systems
  • Spin qubits

By Deployment

  • On-premises
  • Cloud-based

By End-User

  • Healthcare and life sciences
  • BFSI
  • Automotive and aerospace
  • Defense and security
  • Energy

Geography

  • North America
    • US
    • Canada
    • Mexico
  • APAC
    • China
    • Japan
    • South Korea
    • India
    • Australia
    • Indonesia
  • Europe
    • Germany
    • UK
    • France
    • Italy
    • Spain
    • The Netherlands
  • South America
    • Brazil
    • Argentina
    • Chile
  • Middle East and Africa
    • UAE
    • South Africa
    • Turkey
  • Rest of World (ROW)

This study identifies the exponential growth in ml workloads and need for advanced computational paradigms as one of the prime reasons driving the global quantum computing for ai market growth during the next few years. Also, strategic synergies between government initiatives and private sector funding for quantum infrastructure and innovations in hybrid algorithm development and quantum error correction methodologies will lead to sizable demand in the market.

The report on the global quantum computing for ai market covers the following areas:

  • Global quantum computing for ai market sizing
  • Global quantum computing for ai market forecast
  • Global quantum computing for ai market industry analysis

The robust vendor analysis is designed to help clients improve their market position, and in line with this, this report provides a detailed analysis of several leading global quantum computing for ai market vendors that include Alibaba Group Holding Ltd., Amazon Web Services Inc., Atos SE, Baidu Inc., Classiq Technologies, Fujitsu Ltd., Google LLC, IBM Corp., Intel Corp., Microsoft Corp., NEC Corp., NVIDIA Corp., Pasqal, PsiQuantum Corp., QC Ware, QuEra Computing Inc., Rigetti and Co. LLC, Tencent Holdings Ltd., Toshiba Corp., Xanadu Quantum Technologies Inc.. Also, the global quantum computing for ai market analysis report includes information on upcoming trends and challenges that will influence market growth. This is to help companies strategize and leverage all forthcoming growth opportunities.

The publisher presents a detailed picture of the market by the way of study, synthesis, and summation of data from multiple sources by an analysis of key parameters such as profit, pricing, competition, and promotions. It presents various market facets by identifying the key industry influencers. The data presented is comprehensive, reliable, and a result of extensive primary and secondary research. The market research reports provide a complete competitive landscape and an in-depth vendor selection methodology and analysis using qualitative and quantitative research to forecast accurate market growth.

Table of Contents

1 Executive Summary

  • 1.1 Market overview
    • Executive Summary - Chart on Market Overview
    • Executive Summary - Data Table on Market Overview
    • Executive Summary - Chart on Global Market Characteristics
    • Executive Summary - Chart on Market by Geography
    • Executive Summary - Chart on Market Segmentation by Technology
    • Executive Summary - Chart on Market Segmentation by Deployment
    • Executive Summary - Chart on Market Segmentation by End-user
    • Executive Summary - Chart on Incremental Growth
    • Executive Summary - Data Table on Incremental Growth
    • Executive Summary - Chart on Company Market Positioning

2 Technavio Analysis

  • 2.1 Analysis of price sensitivity, lifecycle, customer purchase basket, adoption rates, and purchase criteria
    • Analysis of price sensitivity, lifecycle, customer purchase basket, adoption rates, and purchase criteria
  • 2.2 Criticality of inputs and Factors of differentiation
  • 2.3 Factors of disruption
  • 2.4 Impact of drivers and challenges

3 Market Landscape

  • 3.1 Market ecosystem
  • 3.2 Market characteristics
  • 3.3 Value chain analysis

4 Market Sizing

  • 4.1 Market definition
  • 4.2 Market segment analysis
    • Market segments
  • 4.3 Market size 2025
  • 4.4 Market outlook: Forecast for 2025-2030

5 Historic Market Size

  • 5.1 Global Quantum Computing For AI Market 2020 - 2024
    • Historic Market Size - Data Table on Global Quantum Computing For AI Market 2020 - 2024 ($ million)
  • 5.2 Technology segment analysis 2020 - 2024
    • Historic Market Size - Technology Segment 2020 - 2024 ($ million)
  • 5.3 Deployment segment analysis 2020 - 2024
    • Historic Market Size - Deployment Segment 2020 - 2024 ($ million)
  • 5.4 End-user segment analysis 2020 - 2024
    • Historic Market Size - End-user Segment 2020 - 2024 ($ million)
  • 5.5 Geography segment analysis 2020 - 2024
    • Historic Market Size - Geography Segment 2020 - 2024 ($ million)
  • 5.6 Country segment analysis 2020 - 2024
    • Historic Market Size - Country Segment 2020 - 2024 ($ million)

6 Qualitative Analysis

  • 6.1 Impact of AI in Global Quantum Computing for AI Market
  • 6.2 Impact of Geopolitical Conflict for Global Quantum Computing for AI Market

7 Five Forces Analysis

  • 7.1 Five forces summary
    • Five forces analysis - Comparison between 2025 and 2030
  • 7.2 Bargaining power of buyers
    • Bargaining power of buyers - Impact of key factors 2025 and 2030
  • 7.3 Bargaining power of suppliers
    • Bargaining power of suppliers - Impact of key factors in 2025 and 2030
  • 7.4 Threat of new entrants
    • Threat of new entrants - Impact of key factors in 2025 and 2030
  • 7.5 Threat of substitutes
    • Threat of substitutes - Impact of key factors in 2025 and 2030
  • 7.6 Threat of rivalry
    • Threat of rivalry - Impact of key factors in 2025 and 2030
  • 7.7 Market condition

8 Market Segmentation by Technology

  • 8.1 Market segments
  • 8.2 Comparison by Technology
  • 8.3 Superconducting qubits - Market size and forecast 2025-2030
  • 8.4 Trapped ions - Market size and forecast 2025-2030
  • 8.5 Photonic systems - Market size and forecast 2025-2030
  • 8.6 Spin qubits - Market size and forecast 2025-2030
  • 8.7 Market opportunity by Technology
    • Market opportunity by Technology ($ million)

9 Market Segmentation by Deployment

  • 9.1 Market segments
  • 9.2 Comparison by Deployment
  • 9.3 On-premises - Market size and forecast 2025-2030
  • 9.4 Cloud-based - Market size and forecast 2025-2030
  • 9.5 Market opportunity by Deployment
    • Market opportunity by Deployment ($ million)

10 Market Segmentation by End-user

  • 10.1 Market segments
  • 10.2 Comparison by End-user
  • 10.3 Healthcare and life sciences - Market size and forecast 2025-2030
  • 10.4 BFSI - Market size and forecast 2025-2030
  • 10.5 Automotive and aerospace - Market size and forecast 2025-2030
  • 10.6 Defense and security - Market size and forecast 2025-2030
  • 10.7 Energy - Market size and forecast 2025-2030
  • 10.8 Market opportunity by End-user
    • Market opportunity by End-user ($ million)

11 Customer Landscape

  • 11.1 Customer landscape overview
    • Analysis of price sensitivity, lifecycle, customer purchase basket, adoption rates, and purchase criteria

12 Geographic Landscape

  • 12.1 Geographic segmentation
  • 12.2 Geographic comparison
  • 12.3 North America - Market size and forecast 2025-2030
    • 12.3.1 US - Market size and forecast 2025-2030
    • 12.3.2 Canada - Market size and forecast 2025-2030
    • 12.3.3 Mexico - Market size and forecast 2025-2030
  • 12.4 APAC - Market size and forecast 2025-2030
    • 12.4.1 China - Market size and forecast 2025-2030
    • 12.4.2 Japan - Market size and forecast 2025-2030
    • 12.4.3 South Korea - Market size and forecast 2025-2030
    • 12.4.4 India - Market size and forecast 2025-2030
    • 12.4.5 Australia - Market size and forecast 2025-2030
    • 12.4.6 Indonesia - Market size and forecast 2025-2030
  • 12.5 Europe - Market size and forecast 2025-2030
    • 12.5.1 Germany - Market size and forecast 2025-2030
    • 12.5.2 UK - Market size and forecast 2025-2030
    • 12.5.3 France - Market size and forecast 2025-2030
    • 12.5.4 Italy - Market size and forecast 2025-2030
    • 12.5.5 Spain - Market size and forecast 2025-2030
    • 12.5.6 The Netherlands - Market size and forecast 2025-2030
  • 12.6 South America - Market size and forecast 2025-2030
    • 12.6.1 Brazil - Market size and forecast 2025-2030
    • 12.6.2 Argentina - Market size and forecast 2025-2030
    • 12.6.3 Chile - Market size and forecast 2025-2030
  • 12.7 Middle East and Africa - Market size and forecast 2025-2030
    • 12.7.1 Saudi Arabia - Market size and forecast 2025-2030
    • 12.7.2 UAE - Market size and forecast 2025-2030
    • 12.7.3 South Africa - Market size and forecast 2025-2030
    • 12.7.4 Israel - Market size and forecast 2025-2030
    • 12.7.5 Turkey - Market size and forecast 2025-2030
  • 12.8 Market opportunity by geography
    • Market opportunity by geography ($ million)
    • Data Tables on Market opportunity by geography ($ million)

13 Drivers, Challenges, and Opportunity

  • 13.1 Market drivers
    • Exponential growth in AI model complexity and training demands
    • Unprecedented demand for advanced predictive analytics
    • Increasing investments and strategic partnerships in hybrid quantum-classical infrastructure
  • 13.2 Market challenges
    • Infrastructural costs and hardware complexity
    • Severe shortage of specialized talent and expertise
    • Algorithmic instability and error correction hurdles
  • 13.3 Impact of drivers and challenges
    • Impact of drivers and challenges in 2025 and 2030
  • 13.4 Market opportunities
    • Exponential growth in ML workloads and need for advanced computational paradigms
    • Strategic synergies between government initiatives and private sector funding for quantum infrastructure
    • Innovations in hybrid algorithm development and quantum error correction methodologies

14 Competitive Landscape

  • 14.1 Overview
  • 14.2 Competitive Landscape
    • Overview on criticality of inputs and factors of differentiation
  • 14.3 Landscape disruption
    • Overview on factors of disruption
  • 14.4 Industry risks
    • Impact of key risks on business

15 Competitive Analysis

  • 15.1 Companies profiled
    • Companies covered
  • 15.2 Company ranking index
    • Company ranking index
  • 15.3 Market positioning of companies
    • Matrix on companies position and classification
  • 15.4 Alibaba Group Holding Ltd.
    • Alibaba Group Holding Ltd. - Overview
    • Alibaba Group Holding Ltd. - Business segments
    • Alibaba Group Holding Ltd. - Key offerings
    • Alibaba Group Holding Ltd. - Segment focus
    • SWOT
  • 15.5 Amazon Web Services Inc.
    • Amazon Web Services Inc. - Overview
    • Amazon Web Services Inc. - Product / Service
    • Amazon Web Services Inc. - Key offerings
    • SWOT
  • 15.6 Atos SE
    • Atos SE - Overview
    • Atos SE - Business segments
    • Atos SE - Key offerings
    • Atos SE - Segment focus
    • SWOT
  • 15.7 Baidu Inc.
    • Baidu Inc. - Overview
    • Baidu Inc. - Business segments
    • Baidu Inc. - Key news
    • Baidu Inc. - Key offerings
    • Baidu Inc. - Segment focus
    • SWOT
  • 15.8 Fujitsu Ltd.
    • Fujitsu Ltd. - Overview
    • Fujitsu Ltd. - Business segments
    • Fujitsu Ltd. - Key offerings
    • Fujitsu Ltd. - Segment focus
    • SWOT
  • 15.9 Google LLC
    • Google LLC - Overview
    • Google LLC - Product / Service
    • Google LLC - Key offerings
    • SWOT
  • 15.10 IBM Corp.
    • IBM Corp. - Overview
    • IBM Corp. - Business segments
    • IBM Corp. - Key news
    • IBM Corp. - Key offerings
    • IBM Corp. - Segment focus
    • SWOT
  • 15.11 Intel Corp.
    • Intel Corp. - Overview
    • Intel Corp. - Business segments
    • Intel Corp. - Key news
    • Intel Corp. - Key offerings
    • Intel Corp. - Segment focus
    • SWOT
  • 15.12 Microsoft Corp.
    • Microsoft Corp. - Overview
    • Microsoft Corp. - Business segments
    • Microsoft Corp. - Key news
    • Microsoft Corp. - Key offerings
    • Microsoft Corp. - Segment focus
    • SWOT
  • 15.13 NEC Corp.
    • NEC Corp. - Overview
    • NEC Corp. - Business segments
    • NEC Corp. - Key offerings
    • NEC Corp. - Segment focus
    • SWOT
  • 15.14 NVIDIA Corp.
    • NVIDIA Corp. - Overview
    • NVIDIA Corp. - Business segments
    • NVIDIA Corp. - Key news
    • NVIDIA Corp. - Key offerings
    • NVIDIA Corp. - Segment focus
    • SWOT
  • 15.15 Rigetti and Co. LLC
    • Rigetti and Co. LLC - Overview
    • Rigetti and Co. LLC - Product / Service
    • Rigetti and Co. LLC - Key offerings
    • SWOT
  • 15.16 Tencent Holdings Ltd.
    • Tencent Holdings Ltd. - Overview
    • Tencent Holdings Ltd. - Business segments
    • Tencent Holdings Ltd. - Key offerings
    • Tencent Holdings Ltd. - Segment focus
    • SWOT
  • 15.17 Toshiba Corp.
    • Toshiba Corp. - Overview
    • Toshiba Corp. - Product / Service
    • Toshiba Corp. - Key offerings
    • SWOT
  • 15.18 Xanadu Quantum Technologies Inc.
    • Xanadu Quantum Technologies Inc. - Overview
    • Xanadu Quantum Technologies Inc. - Product / Service
    • Xanadu Quantum Technologies Inc. - Key offerings
    • SWOT

16 Appendix

  • 16.1 Scope of the report
    • Market definition
    • Objectives
    • Notes and caveats
  • 16.2 Inclusions and exclusions checklist
    • Inclusions checklist
    • Exclusions checklist
  • 16.3 Currency conversion rates for US$
    • Currency conversion rates for US$
  • 16.4 Research methodology
    • Research methodology
  • 16.5 Data procurement
    • Information sources
  • 16.6 Data validation
    • Data validation
  • 16.7 Validation techniques employed for market sizing
    • Validation techniques employed for market sizing
  • 16.8 Data synthesis
    • Data synthesis
  • 16.9 360 degree market analysis
    • 360 degree market analysis
  • 16.10 List of abbreviations
    • List of abbreviations
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