Optical Physics: Principles and Applications of Optical Science

Optical physics is a foundational branch of physics that explores the behavior, properties, and interactions of light with matter. Light, in its various forms, plays a critical role in both natural phenomena and technological advancements. Understanding its fundamental nature is essential for applications ranging from imaging systems to communication networks and quantum technologies. This chapter introduces the basic principles of optical physics, covering the nature and properties of light and the historical development of optical science.

Light exhibits both wave-like and particle-like properties, a duality that has been central to the development of modern physics. As an electromagnetic wave, light consists of oscillating electric and magnetic fields propagating through space. The wavelength and frequency of these oscillations determine the characteristics of light, including its color in the visible spectrum. The wave theory of light explains many optical phenomena such as interference, diffraction, and polarization, all of which are essential in optical technologies. However, light also behaves as a stream of particles called photons, as demonstrated by the photoelectric effect. This particle-like nature of light laid the foundation for quantum optics and photonics, which are crucial for contemporary research and applications.

1147146107
Optical Physics: Principles and Applications of Optical Science

Optical physics is a foundational branch of physics that explores the behavior, properties, and interactions of light with matter. Light, in its various forms, plays a critical role in both natural phenomena and technological advancements. Understanding its fundamental nature is essential for applications ranging from imaging systems to communication networks and quantum technologies. This chapter introduces the basic principles of optical physics, covering the nature and properties of light and the historical development of optical science.

Light exhibits both wave-like and particle-like properties, a duality that has been central to the development of modern physics. As an electromagnetic wave, light consists of oscillating electric and magnetic fields propagating through space. The wavelength and frequency of these oscillations determine the characteristics of light, including its color in the visible spectrum. The wave theory of light explains many optical phenomena such as interference, diffraction, and polarization, all of which are essential in optical technologies. However, light also behaves as a stream of particles called photons, as demonstrated by the photoelectric effect. This particle-like nature of light laid the foundation for quantum optics and photonics, which are crucial for contemporary research and applications.

3.99 In Stock
Optical Physics: Principles and Applications of Optical Science

Optical Physics: Principles and Applications of Optical Science

by Mark Hedges

Narrated by Aria Montgomery

Unabridged — 1 hours, 50 minutes

Optical Physics: Principles and Applications of Optical Science

Optical Physics: Principles and Applications of Optical Science

by Mark Hedges

Narrated by Aria Montgomery

Unabridged — 1 hours, 50 minutes

Audiobook (Digital)

$3.99
FREE With a B&N Audiobooks Subscription | Cancel Anytime
$0.00

Free with a B&N Audiobooks Subscription | Cancel Anytime

START FREE TRIAL

Already Subscribed? 

Sign in to Your BN.com Account


Listen on the free Barnes & Noble NOOK app


Related collections and offers

FREE

with a B&N Audiobooks Subscription

Or Pay $3.99

Overview

Optical physics is a foundational branch of physics that explores the behavior, properties, and interactions of light with matter. Light, in its various forms, plays a critical role in both natural phenomena and technological advancements. Understanding its fundamental nature is essential for applications ranging from imaging systems to communication networks and quantum technologies. This chapter introduces the basic principles of optical physics, covering the nature and properties of light and the historical development of optical science.

Light exhibits both wave-like and particle-like properties, a duality that has been central to the development of modern physics. As an electromagnetic wave, light consists of oscillating electric and magnetic fields propagating through space. The wavelength and frequency of these oscillations determine the characteristics of light, including its color in the visible spectrum. The wave theory of light explains many optical phenomena such as interference, diffraction, and polarization, all of which are essential in optical technologies. However, light also behaves as a stream of particles called photons, as demonstrated by the photoelectric effect. This particle-like nature of light laid the foundation for quantum optics and photonics, which are crucial for contemporary research and applications.


Product Details

BN ID: 2940193842446
Publisher: Daphne Haydens LLC
Publication date: 03/15/2025
Edition description: Unabridged
From the B&N Reads Blog

Customer Reviews