Top 50 Global Companies in Hollow Photonic Crystal Fiber Market 2025: Strategic Overview And Future Trends (2024–2035)

RELEASE DATE: Sep 2025 Author: Spherical Insights
According to a research report published by Spherical Insights & Consulting, The Global Photonic Crystals in Light-Emitting Devices Market Size is projected to Grow from USD 4.84 Billion in 2024 to USD 26.14 Billion by 2035, at a CAGR of 16.57% during the forecast period 2025–2035.

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Description

According to a research report published by Spherical Insights & Consulting, The Global Photonic Crystals in Light-Emitting Devices Market Size is projected to Grow from USD 4.84 Billion in 2024 to USD 26.14 Billion by 2035, at a CAGR of 16.57% during the forecast period 2025–2035. The market for photonic crystals in light-emitting devices is in greater demand because photonic crystals improve the directionality, colour purity, and light extraction efficiency of LEDs and other emitters, resulting in brighter and more energy-efficient devices. Additionally, advancements in fabrication methods, like as self-assembly and nanolithography, are lowering prices and making it possible to produce more intricate structures. Adoption is further fuelled by the growing need for miniaturised screens, medical diagnostics, high-speed optical communications, and renewable energy.

 

 

Introduction

Photonic crystals are periodic optical materials that, like electronic band gaps in semiconductors, provide photonic band gaps to control the propagation of light. These structures improve the performance of light-emitting devices by facilitating directional emission, enhancing light extraction efficiency, and regulating spontaneous emission. The market for hollow photonic crystal fibre is expanding significantly as a result of numerous important factors. Since optical fibres provide superior performance features, including lower attenuation and larger bandwidth, which make them perfect for modern telecommunications infrastructure, the growing need for high-speed internet and data transmission is a major driver. This need is further driven by the quick development of 5G networks. High-performance fibre optics must also be installed due to the increasing dependence on data centres and cloud computing.  Because hollow photonic crystal fibres can transmit high-intensity light with little loss, they are being used more and more in the medical field for diagnostics and imaging. This helps with endoscopic operations and minimally invasive surgeries. Technological developments in these areas are also driving market expansion.

 

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Photonic Crystals in Light-Emitting Devices Market Size & Statistics

  • The Market Size for Photonic Crystals in Light-Emitting Devices Was Estimated to be worth USD 4.84 Billion in 2024.
  • The Market size is Going to Expand at a CAGR of 16.57% between 2025 and 2035.
  • The Global Photonic Crystals in Light-Emitting Devices Market Size is anticipated to reach USD 26.14 Billion by 2035.
  • North America is expected to generate the highest demand during the forecast period in the Photonic Crystals in Light-Emitting Devices Market
  • Asia Pacific is expected to grow the fastest during the forecast period in the Photonic Crystals in Light-Emitting Devices Market.

 

 

Regional growth and demand                      

Asia Pacific is expected to grow the fastest during the forecast period in the photonic crystals in light-emitting devices market. The market for photonic crystals in light-emitting devices is now growing in the Asia Pacific due to rapid telecommunications infrastructure development, rising use of cutting-edge medical technologies, and large R&D expenditures are the main drivers of this expansion in nations like China, Japan, and India. The need for hollow photonic crystal fibres is also being driven by the region's increased focus on technical innovation, automation, and advanced manufacturing technologies.

 

North America is expected to generate the highest demand during the forecast period in the photonic crystals in light-emitting devices market. The photonic crystals in the light-emitting devices market with the quickest rate of growth throughout the study period are anticipated to be in North America. Significant expenditures in telecommunications infrastructure, especially the quick rollout of 5G networks, and improvements in medical technology are responsible for the region's dominance. Innovation and adoption are further accelerated by the existence of significant technology businesses and research institutions.

 

Top 10 trends in the Photonic Crystals in Light-Emitting Devices Market

  1. Integration with Emerging Technologies
  2. Advancements in Optical Communication
  3. Development of Flexible and Transparent Displays
  4. Miniaturization of Devices
  5. Enhanced Light Emission Efficiency
  6. Advancements in Material Science
  7. Integration with Augmented and Virtual Reality
  8. Collaborations and Partnerships
  9. Focus on Sustainable Manufacturing
  10. Government Support and Funding

 

1. Integration with Emerging Technologies

The market for light-emitting devices is seeing a major trend with the integration of photonic crystals with new technologies like artificial intelligence and quantum computing. The increasing need for sophisticated optical components can be met by using photonic crystals to create devices with previously unheard-of capability and efficiency. The evolution of quantum systems depends on photonic devices, which enable faster processing rates and better data handling in quantum computing.  The market for photonic crystals is anticipated to rise as more companies investigate the possibilities of quantum technology.

 

2. Advancements in Optical Communication

The performance of fibre optic networks and telecommunications equipment is being greatly improved by developments in optical communication. Photonic crystals are essential for increasing bandwidth, decreasing signal loss, and enabling next-generation communication technologies, such as 5G and beyond, because of their ability to accurately control light at the nanoscale. More effective data transport is made possible by their integration, meeting the growing need for dependable and fast internet access. One example of how photonic crystals have the potential to transform optical communication systems is the creation of a silicon photonic multiplexer chip that can transmit data at 38 Tbps.

 

3. Development of Flexible and Transparent Displays

The performance of fibre optic networks and telecommunications equipment is being greatly improved by developments in optical communication. Photonic crystals are essential for increasing bandwidth, decreasing signal loss, and enabling next-generation communication technologies, such as 5G and beyond, because of their ability to accurately control light at the nanoscale. More effective data transport is made possible by their integration, meeting the growing need for dependable and fast internet access. One example of how photonic crystals have the potential to transform optical communication systems is the creation of a silicon photonic multiplexer chip that can transmit data at 38 Tbps.

 

4. Miniaturization of Devices

In the market for photonic crystals in light-emitting devices, device miniaturisation is a key trend. Compact optical components can be made due to photonic crystals, which improve light-matter interactions, reduce device sizes without sacrificing performance, and confine light inside nanoscale structures. This downsizing makes it easier to incorporate photonic devices into smaller form factors, such as lab-on-a-chip systems and wearable electronics. To illustrate its potential for lowering device footprints while preserving high functionality, photonic crystal nanobeam resonators have been used to develop high-speed electro optic modulators with submicron dimensions. These developments are essential for creating high-performance, effective photonic systems for a range of uses.

 

5. Enhanced Light Emission Efficiency

Light-emitting device technology is being greatly advanced by the trend of increased light emission efficiency in photonic crystals. Nanoscale light manipulation using photonic crystals enhances light extraction and emission properties. To improve light extraction efficiency, for example, researchers at the University of California, Santa Barbara, have created nitride-based LEDs that incorporate photonic crystals. Similarly, effective light energy redistribution has been shown to boost emission intensity in perovskite-based photonic crystals. These developments are essential for applications where effective light emission is critical, such as in displays, lighting, and optical communication systems.

 

Empower your strategic planning:

Stay informed with the latest industry insights and market trends to identify new opportunities and drive growth in the photonic crystals in light-emitting devices market. To explore more in-depth trends, insights, and forecasts, please refer to our detailed report.

 

Top 20 Companies Leading the Photonic Crystals in Light-Emitting Devices Market

  1. NKT Photonics
  2. Thorlabs Inc.
  3. Corning Incorporated
  4. Furukawa Electric Co., Ltd.
  5. Prysmian Group
  6. Yangtze Optical Fibre and Cable Joint Stock Limited Company (YOFC)
  7. OFS Fitel, LLC
  8. Heraeus Holding GmbH
  9. Sumitomo Electric Industries, Ltd.
  10. Leoni AG
  11. Lumenisity Limited
  12. Fibercore Limited
  13. Hengtong Group Co., Ltd.
  14. Fujikura Ltd.
  15. Sterlite Technologies Limited
  16. ZTT International Limited
  17. CommScope Holding Company, Inc.
  18. OptoNest Corporation
  19. Photonics Bretagne
  20. FiberHome Telecommunication Technologies Co., Ltd.
  21. Others

 

1. NKT Photonics

Headquarters: Birkerod, Denmark

Photonic crystal fibres, fibre optic sensing systems, and high-performance fibre lasers are all supplied by NKT Photonics.  With its main office in Birkerod, Denmark, the company caters to a wide range of areas, such as industrial applications, medical and life sciences, aerospace and defence, and quantum and nanotechnology. Low noise fibre lasers, distributed temperature monitoring systems, supercontinuum white light lasers, ultrafast lasers, and a variety of specialty fibres are all included in their product line. The inventiveness and dedication to photonics excellence of NKT Photonics are well known.

 

2. Thorlabs Inc.

Headquarters: Newton, New Jersey

Thorlabs Inc. is a prominent manufacturer and designer of photonics equipment with a focus on biomedical applications, manufacturing, and research. With its headquarters located in Newton, New Jersey, the corporation is a vertically integrated organisation that designs, develops, and manufactures more than 20,000 products. Thorlabs has grown internationally, with offices and production sites in the US, Canada, UK, Germany, France, Sweden, Japan, China, and Brazil. The business prioritises customer care, strives to ship orders the same day, and has yearly sales.

 

3. Corning Incorporated

Headquarters: Corning, New York

Leading American multinational technology corporation Corning Incorporated focuses on glass, ceramics, and associated materials and technologies, such as advanced optics, mostly for use in scientific and industrial settings. The corporation, which has its headquarters in Corning, New York, serves a number of industries worldwide, including the medical sciences, telecommunications, display technologies, environmental technologies, and specialty materials. Innovations like Gorilla® Glass, optical fibre, and ceramic substrates for emissions control are all part of Corning's product line. The corporation is well known for its dedication to R&D, making large investments in innovation to propel technological breakthroughs throughout its several business divisions. Corning is a major force in the materials science industry due to its extensive global reach and technological know-how.

 

4. Furukawa Electric Co., Ltd.

Headquarters: Tokyo, Japan

Tokyo, Japan, is home to the headquarters of the international Japanese company Furukawa Electric Co., Ltd. The company supports sectors like electronics, energy, mobility, and telecommunications with its expertise in new materials and infrastructure solutions. Optical fibre, broadband systems, high-voltage power cables, automotive wire harnesses, and electronic equipment components are among the products offered by Furukawa Electric. With operations in Japan, East Asia, Europe, Russia, North America, and Latin America, the corporation is a worldwide player. Furukawa Electric has contributed to advances in a number of industries and is renowned for its technological know-how in metals, polymers, photonics, and high-frequency technologies. To improve its connection options globally, the firm merged its fibre optic cable activities under a new brand, Lightera.

 

5. Prysmian Group

Headquarters: Milan, Italy

The Prysmian Group is a well-known international company from Italy that specialises in producing energy and telecommunications equipment and electrical connections. With its headquarters in Milan, Italy, the company has operations all over the world and offers a variety of goods and services, such as fiber-optic cables, connection systems, and submarine and subterranean cables. Energy, telecommunications, infrastructure, and industrial applications are just a few of the industries that Prysmian Group supports. The business is renowned for its dedication to sustainability and innovation, making large R&D investments to propel technological breakthroughs in the cable sector. The Prysmian Group remains a major force in the global cable manufacturing industry, with a significant presence in more than 50 countries.

 

Are you ready to discover more about the photonic crystals in the light-emitting devices market?

The report provides an in-depth analysis of the leading companies operating in the global photonic crystals in light-emitting devices market. It includes a comparative assessment based on their product portfolios, business overviews, geographical footprint, strategic initiatives, market segment share, and SWOT analysis. Each company is profiled using a standardized format that includes:

 

Company Profiles

  1. NKT Photonics
  • Business Overview
  • Company Snapshot
  • Products Overview
  • Company Market Share Analysis
  • Company Coverage Portfolio
  • Financial Analysis
  • Recent Developments
  • Merger and Acquisitions
  • SWOT Analysis
  1. Thorlabs Inc.
  2. CORNING INCORPORATED
  3. Furukawa Electric Co., Ltd.
  4. Prysmian Group
  5. Yangtze Optical Fibre and Cable Joint Stock Limited Company (YOFC)
  6. OFS Fitel, LLC
  7. Heraeus Holding GmbH
  8. Sumitomo Electric Industries, Ltd.
  9. Leoni AG
  10. Lumenisity Limited
  11. Fibercore Limited
  12. Hengtong Group Co., Ltd.
  13. Fujikura Ltd.
  14. Sterlite Technologies Limited
  15. ZTT International Limited
  16. CommScope Holding Company, Inc.
  17. OptoNest Corporation
  18. Photonics Bretagne
  19. FiberHome Telecommunication Technologies Co., Ltd.
  20. Others

 

Conclusion

The photonic crystals in the light-emitting devices market, due to the growing need for fast internet and effective communication networks, are bolstered by the expansion of 5G and the rise of cloud computing. The enhanced performance of these fibres is ideal for data centres and modern telecoms. Growth is also accelerated by medical applications, where fibres improve diagnosis and imaging, particularly in minimally invasive procedures. Furthermore, the need for cutting-edge medical technologies is driven by the ageing population and the rising incidence of chronic diseases, which supports market expansion.

 

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