New York, United States, Oct. 26, 2022 (GLOBE NEWSWIRE) -- Adaptive optics (AO) is a technology integrated with the optical systems for advanced imaging and microscopy. These technologies are used to enhance an optical system's output by reducing distortion effects by incoming wavefronts. The setup finds major application in retinal imaging, laser communication, and biological research, among others. The application ecosystem contains three main components: wavefront sensors, control systems, and wavefront modulator. Furthermore, adaptive optics solutions support the user in obtaining the subject's finer details through magnified and advanced imaging.
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Market Dynamics
An increase in investment in the R&D field for integrating adaptive optics is expected to boost the market. In recent years, the application of adaptive optics to reduce optical aberrations in medical sciences, such as ophthalmology and retinal imaging, has increased market demand. Different companies, such as Iris AO Inc., offer their AO systems designed explicitly for ophthalmology and retinal imaging with the increasing demand for adaptive optics. For example, Iris AO DMs are being used for retinal imaging by the U.S. National Institutes of Health.
An increase in demand for high-resolution microscopy across various biomedical research domains; increased government funding and accelerated the growth of the global adaptive optics market. Researchers have found adaptive optics systems' applications across many industries, including high-end manufacturing microscopes and various spectroscopy techniques.
In May 2019, researchers at the U.S. National Eye Institute researched to capture mosaic patterns created by the retinal pigment epithelium (RPE) in humans using vivo fluorescence ophthalmoscopy coupled with adaptive optics (AO). This has fueled the demand for AO powered imaging ecosystems that would enable better research insights. This has driven the market to grow further. Moreover, many government organizations have adopted these powerful techniques that have further boosted the global market.
Report Scope
Report Metric | Details |
Market Size | USD 3241 Million by 2030 |
CAGR | 31.2% (2022-2030) |
Historical Data | 2019-2020 |
Base Year | 2021 |
Forecast Period | 2022-2030 |
Forecast Units | Value (USD Million) |
Report Coverage | Revenue Forecast, Competitive Landscape, Growth Factors, and Trends |
Segments Covered | Component, End User Industry, Region |
Geographies Covered | North America, Europe, Asia-Pacific, LAME and Rest of the World |
Key Companies Profiled/Vendors | Teledyne e2v LTD (U.K.), Northrop Grumman Corporation(U.S.), Thorlabs, Inc. (U.S.), Iris AO, Inc. (U.S.), r.l. (Italy), Active Optical Systems, LLC (U.S.), Flexible Optical B.V. (Netherlands), Imagine Optic SA (France), Boston Micromachines Corporation (U.S.), Phasics Corp. (France), Benchmark Electronics, Inc. (U.S.), Edmund Optics Inc. (U.S.), Aplegen Inc. (U.S.), Holoeye Photonics AG (Germany), Sacher LasertechnikGmbh (Germany) |
Key Market Opportunities | Increasing Prevalence Of The Medical Devices Industry Enhances The Expansion Of The Adaptive Optics Market Share |
Key Market Drivers | Increasing investment in the R&D field, increased government funding accelerates |
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Regional Analysis
The North American region holds the largest share of the global market. Market dominance can be attributed to recognizing the extensive application scope of adaptive optics in various industries. In embracing adaptive optics technologies, Europe closely approaches North America with a steady growth rate.
Key Highlights
- The global adaptive optics market size was valued at USD 281.42 million in 2021. It is projected to reach USD 3241 million by 2030, growing at a CAGR of 31.2% during the forecast period (2022-2030).
- The Wavefront sensors segment held the largest chunk of the market by components. Moreover, the market for these sensors is expected to grow at the highest rate among others in the market during the forecast period.
- Similarly, wavefront sensing can be used in microscopic imaging of biological samples and tissues. The use of adaptive optics to correct light distortions aims to improve the image quality of dense biological tissues dramatically.
- By End-users, the biomedical imaging segment is expected to witness a steady growth owing to various research activities.
- The Biological research and imaging sector have witnessed great advancements due to the advent of powerful imaging techniques. Besides, a comprehensive study on adaptive optics applications in healthcare continues to be performed at universities and research laboratories worldwide.
- The North American region holds the largest share of the global market.
Competitive Players in the Global Adaptive Optics Market
- Northrop Grumman Corporation(U.S.)
- Thorlabs, Inc. (U.S.)
- Iris AO, Inc. (U.S.)
- r.l. (Italy)
- Active Optical Systems, LLC (U.S.)
- Flexible Optical B.V. (Netherlands)
- Imagine Optic SA (France)
- Boston Micromachines Corporation (U.S.)
- Phasics Corp. (France)
- Benchmark Electronics, Inc. (U.S.)
- Edmund Optics Inc. (U.S.)
- Aplegen Inc. (U.S.)
- Holoeye Photonics AG (Germany)
- Sacher LasertechnikGmbh (Germany)
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Global Adaptive Optics Market: Segmentation
- By Component
-
- Wavefront Sensor
- Wavefront Modulator
- Control System
- Others
- By End-User Industry
-
- Consumer devices
- Head-Mounted Display
- Camera Lenses
- Other Consumer Devices
- Astronomy
- Biomedical Devices
- Ophthalmology
- Biomedical Microscopy
- Cell Analysis
- Other Applications
- Military & Defense
- Laser Defense System
- Biometric Security
- Surveillance
- Other Applications
- Industrial & Manufacturing
- Precision Manufacturing
- Machine Vision
- 3D Printing
- Other Applications
- Consumer devices
- Communication
-
-
- Free-Space Optical Communications
- Sensing
- Other Applications
-
- Others
- Regions
-
- North America
- Europe
- Asia-Pacific
- Central and South America and the Caribbean
- The Middle East and Africa
TABLE OF CONTENT
1 Introduction
1.1 Market Definition
1.2 Market Scope
2 Research Methodology
2.1 Primary Research
2.2 Research Methodology
2.3 Assumptions & Exclusions
2.4 Secondary Data Sources
3 Market Overview
3.1 Report Segmentation & Scope
3.2 Value Chain Analysis: Global Adaptive Optics Market
3.3 Key Market Trends
3.3.1 Drivers
3.3.2 Restraints
3.3.3 Opportunities
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 Substitution
3.4.4 Threat of New Entrants
3.4.5 Competitive Rivalry
3.5 Market Share Analysis
3.6 Technological Overview
3.7 Top investment pockets
3.7 Impact of COVID-19 on Global Adaptive Optics Market
4 Component Overview
4.1 Introduction
4.1.1 Market Size & Forecast (Value)
4.2 Wavefront Sensor
4.2.1 Market Size & Forecast (Value)
4.3 Wavefront Modulator
4.3.1 Market Size & Forecast (Value)
4.4 Control System
4.4.1 Market Size & Forecast (Value)
4.5 Others
4.5.1 Market Size & Forecast (Value)
5 End-User Overview
5.1 Introduction
5.1.1 Market Size & Forecast (Value)
5.2 Consumer devices
5.2.1 Market Size & Forecast (Value)
5.2.2 Head-mounted Display
5.2.3 Camera Lens
5.2.4 Others
5.3 Biomedical Devices
5.3.1 Market Size & Forecast (Value)
5.3.2 Ophthalmology
5.3.3 Biomedical Microscopy
5.3.4 Cell Analysis
5.3.5 Other Applications
5.4 Astronomy
5.4.1 Market Size & Forecast (Value)
5.5 Military & Defense
5.5.1 Market Size & Forecast (Value)
5.5.2 Laser Defense Systems
5.5.3 Biometric Security
5.5.4 Surveillance
5.5.5 Others
5.6 Industrial & Manufacturing
5.6.1 Market Size & Forecast (Value)
5.6.2 Precision Manufacturing
5.6.3 Machine Vision
5.6.4 3D Printing
5.6.5 Others
5.7 Communication
5.7.1 Market Size & Forecast (Value)
5.7.2 Free-Space Orbital Communication
5.7.3 Sensing
5.7.4 Others
5.8 Others
5.8.1 Market Size & Forecast (Value)
6 Regional Overview
6.1 Introduction
6.1.1 Market Size & Forecast (Value)
6.2 America
6.2.1 North America
6.2.1.1 The U.S.
6.2.1.1.1 By Component
6.2.1.1.2 By End-User
6.2.1.2 Canada
6.2.1.2.1 By Component
6.2.1.2.2 By End-User
6.2.1.3 Mexico
6.2.1.3.1 By Component
6.2.1.3.2 By End-User
6.2.2 Central and South America and the Caribbean
6.2.2.1 By Component
6.2.2.2 By End-User
6.2.2.2.1 Brazil
6.2.2.2.1.1 By Component
6.2.2.2.1.2 By End-User
6.2.2.2.2 Argentina
6.2.2.2.2.1 By Component
6.2.2.2.2.2 By End-User
6.2.2.2.3 The Rest ofCentral and South America and the Caribbean
6.2.2.2.3.1 By Component
6.2.2.2.3.2 By End-User
6.3 Europe
6.3.1 Market Size & Forecast (Value)
6.3.2 Western Europe
6.3.2.1 The U.K.
6.3.2.1.1 By Component
6.3.2.1.2 By End-User
6.3.2.2 Germany
6.3.2.2.1 By Component
6.3.2.2.2 By End-User
6.3.2.3 France
6.3.2.3.1 By Component
6.3.2.3.2 By End-User
6.3.2.4 Spain
6.3.2.4.1 By Component
6.3.2.4.2 By End-User
6.3.2.5 Italy
6.3.2.5.1 By Component
6.3.2.5.2 By End-User
6.3.2.6 The Rest of Western Europe
6.3.2.6.1 By Component
6.3.2.6.2 By End-User
6.3.3 Eastern Europe
6.3.3.1 By Component
6.3.3.2 By End-User
6.3.4 The Rest of Europe
6.3.4.1 By Component
6.3.4.2 By End-User
6.4 Asia-Pacific
6.4.1 Market Size & Forecast (Value)
6.4.2 Japan
6.4.2.1 By Component
6.4.2.2 By End-User
6.4.3 China
6.4.3.1 By Component
6.4.3.1 By End-User
6.4.4 Australia
6.4.4.1 By Component
6.4.4.2 By End-User
6.4.5 India
6.4.5.1 By Component
6.4.5.2 By End-User
6.4.6 South Korea
6.4.6.1 By Component
6.4.6.2 By End-User
6.4.7 The Rest of Asia-Pacific
6.4.7.1 By Component
6.4.7.2 By End-User
6.5 The Middle East & Africa
6.5.1 The Middle East
6.5.1.1 Market Size & Forecast (Value)
6.5.1.2 Saudi Arabia
6.5.1.2.1 By Component
6.5.1.2.2 By End-User
6.5.1.3 The UAE
6.5.1.3.1 By Component
6.5.1.3.2 By End-User
6.6.1.4 Qatar
6.6.1.4.1 By Component
6.6.1.4.2 By End-User
6.6.2 The Africa
6.6.2.1 Market Size & Forecast (Value)
7 Company Profile
7.1 Teledyne e2v LTD
7.1.1 Company Overview
7.1.2 Financial Performance
7.1.3 Recent Developments
7.1.4 ProductPortfolio
7.2 Northrop Grumman corporation
7.2.1 Company Overview
7.2.2 Financial Performance
7.2.3 Recent Developments
7.2.4 ProductPortfolio
7.3 Thorlabs, Inc.
7.3.1 Company Overview
7.3.2 Financial Performance
7.3.3 Recent Developments
7.3.4 ProductPortfolio
7.4 Iris AO, Inc.
7.4.1 Company Overview
7.4.2 Financial Performance
7.4.3 Recent Developments
7.4.4 ProductPortfolio
7.5 AdapticaS.r.l.
7.5.1 Company Overview
7.5.2 Financial Performance
7.5.3 Recent Developments
7.5.4 ProductPortfolio
7.6 Active Optical Systems, LLC
7.6.1 Company Overview
7.6.2 Financial Performance
7.6.3 Recent Developments
7.6.4 ProductPortfolio
7.7 Flexible Optical B.V.
7.7.1 Company Overview
7.7.2 Financial Performance
7.7.3 Recent Developments
7.7.4 ProductPortfolio
7.8 Imagine Optic SA
7.8.1 Company Overview
7.8.2 Financial Performance
7.8.3 Recent Developments
7.8.4 ProductPortfolio
7.9 Boston Micromachines Corporation
7.9.1 Company Overview
7.9.2 Financial Performance
7.9.3 Recent Developments
7.9.4 Product Portfolio
7.10 Phasics Corp.
7.10.1 Company Overview
7.10.2 Financial Performance
7.10.3 Recent Developments
7.10.4 Product Portfolio
7.11 Aplegen Inc.
7.11.1 Company Overview
7.11.2 Financial Performance
7.11.3 Recent Developments
7.11.4 Product Portfolio
7.12 Benchmark Electronics, Inc.
7.12.1 Company Overview
7.12.2 Financial Performance
7.12.3 Recent Developments
7.12.4 Product Portfolio
7.13 Edmund Optics Inc.
7.13.1 Company Overview
7.13.2 Financial Performance
7.13.3 Recent Developments
7.13.4 Product Portfolio
7.14 Holoeye Photonics AG
7.14.1 Company Overview
7.14.2 Financial Performance
7.14.3 Recent Developments
7.14.4 Product Portfolio
7.15 Sacher LasertechnikGmbh
7.15.1 Company Overview
7.15.2 Financial Performance
7.15.3 Recent Developments
7.15.4 Product Portfolio
7.16 Others
7.16.1 Company Overview
7.16.2 Financial Performance
7.16.3 Recent Developments
7.16.4 Product Portfolio
8 Conclusion & Recommendations
9 Acronyms & Abbreviations
Table of Content and Figure @ https://straitsresearch.com/report/adaptive-optics-market/toc
Recent Developments
- In January 2020, National Science Foundation (NSF) newest AO-based Telescope Inouye Solar 4-meter Telescope produced the first image that used adaptive optics to compensate for the blurring effect created by Earth's atmosphere.
- In July 2019, Imaging Optics company collaborated with the EU-funded VOXEL project, innovated means to produce 3D imaging without high doses of X-ray by adapting a plenoptic imaging technique is powered by adaptive optics systems.
News Media
Adoption of Adaptive Optics Components to Revolutionize Telescope Technology
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