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Indeed, the invention of the laser in 1960 was a pivotal moment, marking the start of the modern era of optics or photonics. This technology has since found diverse applications in various fields.
During this modern era, photonic technologies have been used in a wide variety of applications including high - speed transmission, data and image storage, process and inspection monitoring, lithography, microscopy, medical procedures, calibration, spectroscopy, surveillance technologies, laser weaponry, image projection, and importantly lighting. Absolutely, photonics technologies have made substantial contributions across a wide array of industries, impacting telecommunications, semiconductors, computers, manufacturing, medicine, entertainment, and defense. Their versatility and applicability have played a pivotal role in advancing and enhancing various aspects of these industries.
PHOTONICS AROUND THE GLOBE
PHOTONICS SCHOOLS
ECONOMIC IMPACT OF PHOTONICS
Reference: SPIE, Wikipedia, Lawrence Livermore National Laboratory, Photonics Spectra
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“Laser” is an acronym for Light Amplification by Stimulated Emission of Radiation.
Photonics explores the characteristics and uses of photons, focusing on their role in information transfer. Practical applications include laser technologies for tasks such as cleaning, cutting, engraving, and marking in our daily lives.
The development from maser to laser marked a significant advancement in technology. Charles Hard Townes' work laid the foundation, leading to the creation of the first optical oscillator in 1957, and subsequently, the term "laser" emerged. The application for a US patent and its eventual granting in 1960 solidified the breakthrough in the field of optics and paved the way for diverse applications of lasers.
Let’s understand Laser through illustration with graphics;
WHAT IS PHOTONICS?
SMALLEST POINTS
HIGHEST VELOCITY
SHORTEST TIMES
HIGHEST POWER
LASER TYPES
Reference: SPIE, Wikipedia, Lawrence Livermore National Laboratory, Photonics Spectra