HTML clipboardBharatbook added a new report on "Photonic Crystals: Materials, Technologies and Global Markets The report forecasts the size of the market in current U.S. dollars for overall components."
INTRODUCTION
Photonic crystals present an almost unique instance of a theoretically mature technology unable to strike roots in mainstream industry. Indeed, the technology governing photonic crystals, although articulated clearly only decades ago, has been known to humanity for more than 100 years. The principal reason for lack of enthusiasm in embracing this technology is the difficulty involved in the dismantling processes and techniques that promise extreme efficiency on the costing and delivery fronts. However, most of these conventional processes are facing the end of life because they have reached their physical limits. Photonic crystal-driven sensing, which promises switching at speeds much higher than what is delivered by present-day technologies, is therefore poised to gain greater acceptance in various industries.
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The extent to which photonic crystals hold promise can be gauged by the diversity in modules and components that can monetize the potential of photonic crystals in the near future. This report, which covers the market potential for such modules and components, does not claim that it is an exhaustive list. It is indeed possible for photonic crystals to be employed outside this list. The reason for selecting these modules and components is that there have been demonstrated instances of successful adoption of photonic crystals in these applications.
STUDY GOALS AND OBJECTIVES
This study has the following goals and objectives:
* Measuring and forecasting the market size for overall components and modules internalizing photonic crystals in value terms for each individual component and module, and volume terms wherever possible
* Breaking down the overall photonic crystal components’ and modules’ market along individual components and modules: light emitting devices/diodes (LED), solar and photovoltaic (PV) cells, displays, biosensors, image sensors, optical fibers, discrete and integrated optical components as well as lasers and supercontinuum sources
* Breaking down the individual photonic crystal components’ and modules’ market along business verticals: automotive; energy, utilities and lighting; medicine; telecom; industrial and scientific; defense, surveillance, aerospace; computing and consumer electronics, white goods, and office space
REASONS FOR DOING THE STUDY
The principal objective of this report is to chart the progress of a technology that is acquiring increasing surety and self-confidence across multiple domains. Photonic crystals have been the classic underachievers: full of promise, sound in theory but poor on implementation. The technology was a recipient of great disservice due to overriding industry allegiance to established processes and methodologies, to the point of testing their physical limits. This approach always had its limitations; the question confronting stakeholders of technologies such as photonic crystals was not if, but when would the industry warm up to this value proposition?
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