시장보고서
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2094048

양자 센싱 시장 : 제품별, 기술별, 용도별, 최종 이용 산업별 - 시장 규모, 업계 역학, 기회 분석 및 예측(2026-2035년)

Global Quantum Sensing Market: By Product, Technology, Application, End-Use Industry - Market Size, Industry Dynamics, Opportunity Analysis and Forecast For 2026-2035

발행일: | 리서치사: 구분자 Astute Analytica | 페이지 정보: 영문 280 Pages | 배송안내 : 1-2일 (영업일 기준)

    
    
    



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

세계의 양자 센싱 시장은 첨단 센싱 기술에 대한 투자 증가와 다양한 산업 분야에서 고정밀 측정 솔루션에 대한 수요가 높아지는 것을 배경으로, 향후 몇 년 동안 대폭적인 성장이 예상됩니다. 이 시장은 2025년에 7억 80만 달러 규모로 평가되었고, 2035년까지 약 45억 2,350만 달러로 확대될 것으로 예측됩니다. 이는 2026년부터 2035년까지의 예측 기간 동안 20.5%라는 높은 연평균 성장률(CAGR)을 나타내는 것입니다.

시장 성장에 기여하는 주요 요인 중 하나는 초고정밀 내비게이션 및 위치 측정 솔루션에 대한 수요 증가입니다. 항공우주, 방위, 해양, 자율주행 운송 등의 산업에서는 기존 내비게이션 시스템이 기능 장애를 일으킬 수 있는 가혹한 환경에서도 정확한 측위를 유지할 수 있는 첨단 센싱 기술이 요구되고 있습니다.

주목할만한 시장 동향

양자 센싱 시장은 경쟁 구도가 극히 치열한 상황이며, 소수의 입지 탄탄한 기술 기업들이 높은 연구 역량, 전문적인 제품 포트폴리오 및 전략적 파트너십을 통해 막대한 영향력을 행사하고 있습니다. AOSense, Inc.는 양자 센싱 업계의 유력한 경쟁 기업으로 인정받고 있으며, 첨단 원자 광학 기술 및 고정밀 측정 솔루션 개발에 주력하고 있습니다.

Lockheed Martin은 항공우주 및 방위 분야의 주요 기업으로, 첨단 양자 기술을 활용한 기술 개발에 깊이 관여하고 있습니다. Infleqtion사는 업계와의 협력 및 항공우주 분야에 초점을 맞춘 파트너십을 통해 양자 센싱 솔루션의 상용화를 추진하는 데 중요한 역할을 수행하고 있습니다.

ID Quantique사는 광범위한 양자 기술 생태계에서 기초적인 기여를 하는 기업 중 하나로 평가받고 있습니다. 이 회사는 보안 양자 기술 및 고정밀 측정 솔루션 분야에서 전문성을 확립하여, 높은 정밀도, 신뢰성 및 보안이 요구되는 용도를 지원하고 있습니다. Q-CTRL사는 실제 환경에서 양자 시스템의 신뢰성과 성능 향상에 초점을 맞춘 양자 제어 솔루션 개발을 통해 그 존재감을 두드러지게 하고 있습니다.

주요 성장 요인

GPS를 사용할 수 없는 전투 환경에서 신뢰할 수 있는 항법 기능에 대한 수요가 증가함에 따라, 이는 양자 센싱 시장의 성장을 견인하는 주요 요인으로 부상하고 있습니다. 현대 군사 작전은 위성 항법 신호를 이용할 수 없거나, 신호가 방해받거나, 의도적으로 표적이 된 경우에도 지속적이고 정확한 위치 측정이 필요한 자율형 플랫폼 및 첨단 방어 시스템에 대한 의존도를 점점 더 높이고 있습니다. 전자전 능력이 지속적으로 진화함에 따라, 방위 기관들은 기존의 GPS 인프라에만 의존하지 않으면서도 작전상의 유효성을 유지할 수 있는 기술을 우선시하고 있습니다.

새로운 기회 동향

소형화로의 전환은 양자 센싱 시장의 성장을 가속화할 것으로 예상되는 중요한 새로운 성장 기회 동향입니다. 기존에 많은 양자 센싱 시스템은 높은 감도와 특수 인프라에 대한 의존성으로 인해 대규모이며 복잡하고, 엄격하게 관리되는 실험실 환경을 필요로 했습니다. 그러나 양자 공학, 반도체 기술 및 제조 기술의 지속적인 발전으로 인해 연구시설 밖에서도 배치 가능한, 더 소형화되고 효율적이며 상업적으로 실용 가능한 양자 센서의 개발이 가능해지고 있습니다.

최적화의 장벽

높은 제조 비용은 양자 센싱 시장의 성장과 보급을 저해할 가능성이 있는 중대한 과제입니다. 양자 센싱 기술은 기존의 센싱 솔루션에 비해 뛰어난 정확도, 감도, 성능을 제공하지만, 개발, 제조, 유지보수에 수반되는 복잡성으로 인해 비용이 크게 상승하고 있습니다. 이러한 재정적 장벽은 특히 연구개발 예산이 제한된 기관의 경우 활용 기회를 제한할 수 있으며, 다양한 산업 분야에서 양자 센싱 시스템의 상용화를 지연시킬 우려가 있습니다.

목차

제1장 주요 요약 : 세계의 양자 센싱 시장

제2장 조사 방법 및 프레임워크

제3장 세계의 양자 센싱 시장 개요

제4장 세계의 양자 센싱 시장 분석

제5장 세계의 양자 센싱 시장 분석

제6장 북미 시장 분석

제7장 유럽 시장 분석

제8장 아시아태평양 시장 분석

제9장 중동 및 아프리카 시장 분석

제10장 남미 시장 분석

제11장 기업 개요

제12장 부록

KTH 26.07.27

The global quantum sensing market is expected to experience significant expansion over the coming years, driven by increasing investments in advanced sensing technologies and growing demand for highly accurate measurement solutions across multiple industries. The market is estimated to reach a valuation of USD 700.8 million in 2025 and is projected to expand to approximately USD 4,523.5 million by 2035, representing a strong compound annual growth rate (CAGR) of 20.5% during the forecast period from 2026 to 2035.

One of the primary factors contributing to market growth is the increasing demand for ultra-precise navigation and positioning solutions. Industries such as aerospace, defense, maritime, and autonomous transportation require advanced sensing technologies capable of maintaining accurate positioning even in challenging environments where traditional navigation systems may experience disruptions.

Noteworthy Market Developments

The quantum sensing market is characterized by a highly competitive landscape in which a limited number of established technology companies hold significant influence through advanced research capabilities, specialized product portfolios, and strategic partnerships. AOSense, Inc. is recognized as a prominent competitor in the quantum sensing industry, focusing on the development of advanced atom-optic technologies and precision measurement solutions.

Lockheed Martin represents a major force in the aerospace and defense sector, with significant involvement in the development of advanced quantum-enabled technologies. Infleqtion plays an important role in advancing the commercialization of quantum sensing solutions through industry collaborations and aerospace-focused partnerships.

ID Quantique is considered one of the foundational contributors to the broader quantum technology ecosystem. The company has established expertise in secure quantum technologies and precision measurement solutions, supporting applications that require advanced levels of accuracy, reliability, and security. Q-CTRL has distinguished itself by developing quantum control solutions focused on improving the reliability and performance of quantum systems in real-world environments.

Core Growth Drivers

The increasing demand for reliable navigation capabilities in GPS-denied combat environments is becoming a major factor driving the growth of the quantum sensing market. Modern military operations are becoming increasingly dependent on autonomous platforms and advanced defense systems that require continuous, accurate positioning even when satellite navigation signals are unavailable, disrupted, or intentionally targeted. As electronic warfare capabilities continue to evolve, defense organizations are prioritizing technologies that can maintain operational effectiveness without relying exclusively on traditional GPS infrastructure.

Emerging Opportunity Trends

The shift toward miniaturization represents a significant emerging opportunity trend that is expected to accelerate growth in the quantum sensing market. Historically, many quantum sensing systems required large, complex, and highly controlled laboratory environments due to their sensitivity and dependence on specialized infrastructure. However, ongoing advancements in quantum engineering, semiconductor technologies, and fabrication techniques are enabling the development of smaller, more efficient, and commercially viable quantum sensors that can be deployed beyond research facilities.

Barriers to Optimization

High production costs represent a significant challenge that may restrict the growth and widespread adoption of the quantum sensing market. Although quantum sensing technologies offer exceptional levels of precision, sensitivity, and performance compared with conventional sensing solutions, the complexity involved in their development, manufacturing, and maintenance contributes to substantially higher costs. These financial barriers can limit accessibility, particularly for organizations with restricted research and technology budgets, and may slow the commercialization of quantum sensing systems across various industries.

Detailed Market Segmentation

By product, atomic clocks emerged as the leading segment in the global quantum sensing market, accounting for the largest market share in 2025. The strong market position of atomic clocks can be attributed to their exceptional accuracy, reliability, and critical role in maintaining precise timing across a wide range of advanced technological systems. These devices serve as essential components for synchronizing communication networks, navigation systems, financial infrastructures, scientific research platforms, and defense applications where even extremely small timing errors can affect overall system performance.

By technology, cold atom technology has emerged as the dominant segment in the quantum sensing market, accounting for the highest market share due to its exceptional measurement accuracy and wide range of advanced applications. This technology has gained significant attention because of its ability to detect extremely small variations in physical parameters, including gravitational fields, magnetic fields, acceleration, and other environmental changes. The superior sensitivity offered by cold atom-based systems makes them highly valuable for precision measurement applications across industries such as aerospace, defense, scientific research, and navigation.

By application, navigation and positioning, navigation, and timing (PNT) has emerged as the leading segment in the quantum sensing market, supported by the increasing demand for highly accurate, reliable, and resilient navigation solutions. The growing dependence on satellite-based navigation systems, particularly global positioning systems (GPS), has highlighted the need for alternative technologies that can maintain operational continuity in environments where satellite signals may be unreliable, unavailable, or intentionally disrupted. Quantum sensing technologies are gaining significant attention in this area due to their ability to provide precise navigation capabilities without relying on external satellite infrastructure.

By end-use industry, the aerospace and defense sector has emerged as the leading segment in the quantum sensing market, driven by its increasing demand for highly accurate, reliable, and secure sensing technologies. The industry relies heavily on advanced measurement and detection capabilities to support mission-critical operations, where even minor inaccuracies can have significant consequences. Quantum sensing technologies offer exceptional levels of precision, enabling improvements in navigation, positioning, timing, surveillance, communication, and threat detection systems used across modern aerospace and defense applications.

Segment Breakdown

By Product

  • Atomic Clocks
  • Magnetometers
  • Gravimeters
  • Inertial Sensors
  • Quantum Imaging

By Technology

  • Cold Atom
  • NV Diamond
  • Trapped Ion
  • Optically Pumped

By Application

  • Navigation/PNT
  • Defense & Intelligence
  • Medical Imaging
  • Geophysical Survey
  • Timing & Synchronization

By End-Use Industry

  • Aerospace & Defense
  • Healthcare
  • Energy & Mining
  • Telecom
  • Research

By Region

  • North America
  • The U.S.
  • Canada
  • Mexico
  • Europe
  • Western Europe
  • The UK
  • Germany
  • France
  • Italy
  • Spain
  • Rest of Western Europe
  • Eastern Europe
  • Poland
  • Russia
  • Rest of Eastern Europe
  • Asia Pacific
  • China
  • India
  • Japan
  • Australia & New Zealand
  • South Korea
  • ASEAN
  • Rest of Asia Pacific
  • Middle East & Africa (MEA)
  • Saudi Arabia
  • South Africa
  • UAE
  • Rest of MEA
  • South America
  • Argentina
  • Brazil
  • Rest of South America

Geography Breakdown

  • North America continues to maintain its position as the largest global market for advanced technologies, largely due to substantial government investment, strong research capabilities, and extensive defense modernization initiatives across the region. The region's dominant market leadership is primarily supported by significant national defense budgets, particularly in the United States, where government agencies allocate considerable resources toward the development and deployment of next-generation technologies.
  • A major contributor to North America's leadership in quantum navigation and related technologies is the extensive funding provided by the United States Department of Defense. The department is actively supporting the development of alternative navigation systems that can operate independently of conventional satellite-based positioning infrastructure. These quantum navigation technologies are designed to ensure reliable and continuous positioning capabilities in challenging environments, particularly during situations involving severe GPS signal disruption, interference, or intentional jamming.
  • Leading Market Participants
  • Apogee Instruments Inc.
  • GWR Instruments Inc.
  • Spectrum Technologies Inc.
  • Thomas Industrial Network Inc.
  • Adcon Telemetry GmbH
  • METER Group
  • Microchip
  • Impedans Ltd.
  • M-squared Lasers Limited
  • Other Prominent Players

Table of Content

Chapter 1. Executive Summary: Global Quantum Sensing Market

Chapter 2. Research Methodology & Research Framework

  • 2.1. Research Objective
  • 2.2. Product Overview
  • 2.3. Market Segmentation
  • 2.4. Qualitative Research
    • 2.4.1. Primary & Secondary Sources
  • 2.5. Quantitative Research
    • 2.5.1. Primary & Secondary Sources
  • 2.6. Breakdown of Primary Research Respondents, By Region
  • 2.7. Assumption for Study
  • 2.8. Market Size Estimation
  • 2.9. Data Triangulation

Chapter 3. Global Quantum Sensing Market Overview

  • 3.1. Industry Value Chain Analysis
    • 3.1.1. Photonics, Laser & Cryogenic Component Suppliers
    • 3.1.2. Quantum Sensor & Device (Clocks, Magnetometers, Gravimeters) Manufacturers
    • 3.1.3. Systems Integration, Packaging & Miniaturization Providers
    • 3.1.4. Calibration, Software & Signal-Processing Enablers
    • 3.1.5. End Users (Aerospace & Defense, Healthcare, Energy & Mining, Telecom, Research)
  • 3.2. Industry Outlook
    • 3.2.1. Overview of the Global Quantum Sensing & Precision-Measurement Industry
    • 3.2.2. Miniaturization (Chip-Scale Clocks) and GPS-Denied PNT Demand
    • 3.2.3. Government Funding, Standards & Lab-to-Field Commercialization
  • 3.3. PESTLE Analysis
  • 3.4. Porter's Five Forces Analysis
    • 3.4.1. Bargaining Power of Suppliers
    • 3.4.2. Bargaining Power of Buyers
    • 3.4.3. Threat of Substitutes
    • 3.4.4. Threat of New Entrants
    • 3.4.5. Degree of Competition
  • 3.5. Market Growth and Outlook
    • 3.5.1. Market Revenue Estimates and Forecast (US$ Mn), 2020-2035
    • 3.5.2. Price Trend Analysis, By Product

Chapter 4. Global Quantum Sensing Market Analysis

  • 4.1. Competition Dashboard
    • 4.1.1. Market Concentration Rate
    • 4.1.2. Company Market Share Analysis (Value %), 2025
    • 4.1.3. Competitor Mapping & Benchmarking

Chapter 5. Global Quantum Sensing Market Analysis

  • 5.1. Market Dynamics and Trends
    • 5.1.1. Growth Drivers
    • 5.1.2. Restraints
    • 5.1.3. Opportunity
    • 5.1.4. Key Trends
  • 5.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 5.2.1. By Product
      • 5.2.1.1. Key Insights
        • 5.2.1.1.1. Atomic Clocks
        • 5.2.1.1.2. Magnetometers
        • 5.2.1.1.3. Gravimeters
        • 5.2.1.1.4. Inertial Sensors
        • 5.2.1.1.5. Quantum Imaging
    • 5.2.2. By Technology
      • 5.2.2.1. Key Insights
        • 5.2.2.1.1. Cold Atom
        • 5.2.2.1.2. NV Diamond
        • 5.2.2.1.3. Trapped Ion
        • 5.2.2.1.4. Optically Pumped
    • 5.2.3. By Application
      • 5.2.3.1. Key Insights
        • 5.2.3.1.1. Navigation/PNT
        • 5.2.3.1.2. Defense & Intelligence
        • 5.2.3.1.3. Medical Imaging
        • 5.2.3.1.4. Geophysical Survey
        • 5.2.3.1.5. Timing & Synchronization
    • 5.2.4. By End-Use Industry
      • 5.2.4.1. Key Insights
        • 5.2.4.1.1. Aerospace & Defense
        • 5.2.4.1.2. Healthcare
        • 5.2.4.1.3. Energy & Mining
        • 5.2.4.1.4. Telecom
        • 5.2.4.1.5. Research
    • 5.2.5. By Region
      • 5.2.5.1. Key Insights
        • 5.2.5.1.1. North America
          • 5.2.5.1.1.1. The U.S.
          • 5.2.5.1.1.2. Canada
          • 5.2.5.1.1.3. Mexico
        • 5.2.5.1.2. Europe
          • 5.2.5.1.2.1. Western Europe
            • 5.2.5.1.2.1.1. The UK
            • 5.2.5.1.2.1.2. Germany
            • 5.2.5.1.2.1.3. France
            • 5.2.5.1.2.1.4. Italy
            • 5.2.5.1.2.1.5. Spain
            • 5.2.5.1.2.1.6. Rest of Western Europe
          • 5.2.5.1.2.2. Eastern Europe
            • 5.2.5.1.2.2.1. Poland
            • 5.2.5.1.2.2.2. Russia
            • 5.2.5.1.2.2.3. Rest of Eastern Europe
        • 5.2.5.1.3. Asia Pacific
          • 5.2.5.1.3.1. China
          • 5.2.5.1.3.2. India
          • 5.2.5.1.3.3. Japan
          • 5.2.5.1.3.4. Australia & New Zealand
          • 5.2.5.1.3.5. South Korea
          • 5.2.5.1.3.6. ASEAN
          • 5.2.5.1.3.7. Rest of Asia Pacific
        • 5.2.5.1.4. Middle East & Africa (MEA)
          • 5.2.5.1.4.1. Saudi Arabia
          • 5.2.5.1.4.2. South Africa
          • 5.2.5.1.4.3. UAE
          • 5.2.5.1.4.4. Rest of MEA
        • 5.2.5.1.5. South America
          • 5.2.5.1.5.1. Argentina
          • 5.2.5.1.5.2. Brazil
          • 5.2.5.1.5.3. Rest of South America

Chapter 6. North America Market Analysis

  • 6.1. Market Dynamics and Trends
    • 6.1.1. Growth Drivers
    • 6.1.2. Restraints
    • 6.1.3. Opportunity
    • 6.1.4. Key Trends
  • 6.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 6.2.1. Key Insights
      • 6.2.1.1. By Product
      • 6.2.1.2. By Technology
      • 6.2.1.3. By Application
      • 6.2.1.4. By End-Use Industry
      • 6.2.1.5. By Country

Chapter 7. Europe Market Analysis

  • 7.1. Market Dynamics and Trends
    • 7.1.1. Growth Drivers
    • 7.1.2. Restraints
    • 7.1.3. Opportunity
    • 7.1.4. Key Trends
  • 7.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 7.2.1. Key Insights
      • 7.2.1.1. By Product
      • 7.2.1.2. By Technology
      • 7.2.1.3. By Application
      • 7.2.1.4. By End-Use Industry
      • 7.2.1.5. By Country

Chapter 8. Asia Pacific Market Analysis

  • 8.1. Market Dynamics and Trends
    • 8.1.1. Growth Drivers
    • 8.1.2. Restraints
    • 8.1.3. Opportunity
    • 8.1.4. Key Trends
  • 8.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 8.2.1. Key Insights
      • 8.2.1.1. By Product
      • 8.2.1.2. By Technology
      • 8.2.1.3. By Application
      • 8.2.1.4. By End-Use Industry
      • 8.2.1.5. By Country

Chapter 9. Middle East & Africa Market Analysis

  • 9.1. Market Dynamics and Trends
    • 9.1.1. Growth Drivers
    • 9.1.2. Restraints
    • 9.1.3. Opportunity
    • 9.1.4. Key Trends
  • 9.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 9.2.1. Key Insights
      • 9.2.1.1. By Product
      • 9.2.1.2. By Technology
      • 9.2.1.3. By Application
      • 9.2.1.4. By End-Use Industry
      • 9.2.1.5. By Country

Chapter 10. South America Market Analysis

  • 10.1. Market Dynamics and Trends
    • 10.1.1. Growth Drivers
    • 10.1.2. Restraints
    • 10.1.3. Opportunity
    • 10.1.4. Key Trends
  • 10.2. Market Size and Forecast, 2020-2035 (US$ Mn)
    • 10.2.1. Key Insights
      • 10.2.1.1. By Product
      • 10.2.1.2. By Technology
      • 10.2.1.3. By Application
      • 10.2.1.4. By End-Use Industry
      • 10.2.1.5. By Country

Chapter 11. Company Profile (Company Overview, Financial Matrix, Key Product landscape, Key Personnel, Key Competitors, Contact Address, and Business Strategy Outlook)

  • 11.1. Apogee Instruments Inc.
  • 11.2. GWR Instruments Inc.
  • 11.3. Spectrum Technologies Inc.
  • 11.4. Thomas Industrial Network Inc.
  • 11.5. Adcon Telemetry GmbH
  • 11.6. METER Group
  • 11.7. Microchip
  • 11.8. Impedans Ltd.
  • 11.9. M-squared Lasers Limited
  • 11.10. Other Prominent Players

Chapter 12. Annexure

  • 12.1. List of Secondary Sources
  • 12.2. Key Country Markets- Macro Economic Outlook/Indicators
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