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LASER stimulated and spontaneous processes Engineering Physics_AKTU, LPU, SPPU https://iygmp.on-app.in/app/oc/332578... #rgsphysics #engineeringphysics JOIN telegram https://t.me/rgsclassesofficial in b tech first year physics /engineering physics/applied physics the optical fiber and the laser is last unit /module. this is the first part of the series. A laser is a device that emits light through a process of optical amplification based on the stimulated emission of electromagnetic radiation. The word "laser" is an acronym for "light amplification by stimulated emission of radiation". The first laser was built in 1960 by Theodore H. Maiman at Hughes Research Laboratories, based on theoretical work by Charles Hard Townes and Arthur Leonard Schawlow. A laser differs from other sources of light in that it emits light which is coherent. Spatial coherence allows a laser to be focused to a tight spot, enabling applications such as laser cutting and lithography. Spatial coherence also allows a laser beam to stay narrow over great distances (collimation), enabling applications such as laser pointers and lidar. Lasers can also have high temporal coherence, which allows them to emit light with a very narrow spectrum. Alternatively, temporal coherence can be used to produce ultrashort pulses of light with a broad spectrum but durations as short as a femtosecond. Lasers are used in optical disc drives, laser printers, barcode scanners, DNA sequencing instruments, fiber-optic, semiconducting chip manufacturing (photolithography), and free-space optical communication, laser surgery and skin treatments, cutting and welding materials, military and law enforcement devices for marking targets and measuring range and speed, and in laser lighting displays for entertainment. Semiconductor lasers in the blue to near-UV have also been used in place of light-emitting diodes (LED's) to excite fluorescence as a white light source. This permits a much smaller emitting area due to the much greater radiance of a laser and avoids the droop suffered by LED's; such devices are already used in some car headlamps

laser engineering physics LASER II 01 II  #aktu #ikgptu optical fiber engineering physics
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laser engineering physics LASER II 01 II #aktu #ikgptu optical fiber engineering physics

Laser Physics - Einstein Coefficients & Stimulated Emission (Full Derivation)
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Laser Physics - Einstein Coefficients & Stimulated Emission (Full Derivation)

LASER COMPLETE Engineering Physics_AKTU, LPU, SPPU  II see new channel @rgsclassesLU
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LASER COMPLETE Engineering Physics_AKTU, LPU, SPPU II see new channel @rgsclassesLU

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How lasers work - a thorough explanation

Engineering Physics Important Questions for AKTU Exam 2026 | Unit 4 Optical Fiber and Lasers |
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Engineering Physics Important Questions for AKTU Exam 2026 | Unit 4 Optical Fiber and Lasers |

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Understanding Vibration and Resonance

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Laser Fundamentals I | MIT Understanding Lasers and Fiberoptics

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LASER | FUNDAMENTALS OF PHOTONICS | ENGINEERING PHYSICS |ONE SHOT|ALL UNIVERSITYPRADEEP GIRI SIR

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We finally understood orbital shapes intuitively! (My mind is blown)

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Spontaneous and Stimulated Emission - Laser in Physics - Physics 2

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OPTICAL FIBRE| ENGINEERING PHYSICS |ALL UNIVERSITYPRADEEP GIRI SIR

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Ruby laser construction and working lecture part 1, Ruby laser applications solid state laser types

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The Most Misunderstood Concept in Physics

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Train Your Brain to Never Forget (5 Feynman Habits)

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Lec 2 | Absorption, Spontaneous and Stimulated Emission in Laser - Properties and Applications

optical Fiber Engineering Physics II Revision 2022 II see new channel @rgsclassesLU
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optical Fiber Engineering Physics II Revision 2022 II see new channel @rgsclassesLU

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Semiconductors explained in 16 mins | Chris Miller

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Population Inversion in Laser action (Laser Gain) | PHYSICS | Bsc | BTech | हिन्दी

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But what is quantum computing? (Grover's Algorithm)