Optical precursors
from classical waves to single photons
Our rough guess is there are 19,750 words in this book.
At a pace averaging 250 words per minute, this book will take 1 hours and 19 minutes to read. With a half hour per day, this will take 3 days to read.
How long will it take you?
This book will take an estimated to read at a reading speed averaging words per minute. With 30 minutes per day, this will take to read.
Enter your reading speedYou can take one of our WPM reading speed tests to find your reading speed.
Create a free account to track your reading progress, build your reading list, and set reading goals.
Word Count
19,750 words, Guess
Page Count
79 pages
Identifiers
- Open LibraryOL31013236M
- ISBN-139789814451932
- ISBN-109814451932
- OCLC Control Number847126140
- Library of Congress Control Number2013942656
Classifications
- DDC535/.15
- LCCQC446.2 .O68 2013
Description
Ever since Einstein’s special relativity in 1905, the principle of invariant light speed in vacuum has been attracting attention from a wide range of disciplines. How to interpret the principle of light speed? Is light referred to continuous light, or light pulse with definite boundaries? Recent discovery of superluminal medium triggered vigorous discussion within the Physics community. Can communication via such “superluminal channel” break the speed limit and thus violate causality principle? Or, will a single photon, which is not governed by classical laws of Physics, tend to break the speed limit? To solve these problems, in this Brief we bring in optical precursor, the theoretical works for which started as early as 1914. This is a typical optical phenomenon combining wave propagation theory and light-wave interaction. Both theory and experimental works are covered in this Brief. The study of precursor verifies that the effective information carried by light pulses can never exceed the speed of light in vacuum- c. Further, through observation from nonclassical single photon source, the precursor rules out the probability of a single photon traveling with the speed, breaking the classical limit.
Subjects
Series Statement
- SpringerBriefs in physics
Reader Reviews
No reviews yet for this book.
Be the first to share your thoughts!