Microphotonics--Materials, Physics, and Applications
Symposium Held November 27-29, 2000, Boston, Massachusetts, U.S.A (Materials Research Society Symposia Proceedings, V. 637,)
Our rough guess is there are 54,000 words in this book.
At a pace averaging 250 words per minute, this book will take 3 hours and 36 minutes to read. With a half hour per day, this will take 7 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.
Author
Contributions
- Pierre Wiltzius (Editor) - Contributor
- K. Wada (Editor) - Contributor
- Thomas F. Krauss (Editor) - Contributor
- Kiyoshi Asakawa (Editor) - Contributor
- Edwin L., Ph.D. Thomas (Editor) - Contributor
Publication
2001-11-01 - Materials Research Society
Language
English
Word Count
54,000 words, Guess
Page Count
216 pages
Physical Format
Hardcover
Identifiers
- ISBN-101558995471
- ISBN-139781558995475
- Library of Congress Control Number2001049447
- OCLC Control Number47764386
- Better World Books9781558995475
and 1 more
- Open LibraryOL8609076M
Classifications
- LCCTA1505 .M53 2001
Description
"The objective of this thesis is to investigate the electrooptical properties of a dipole suspension. A dipole suspension consists of needle-like crystals which, in the presence of an electric field, orient themselves parallel to it. If the dipoles align themselves parallel to incident light, the suspension will transmit the light. If no electric field is present, the dipoles are in a random state, and little light is transmitted. The projected area of the dipoles is smaller when they are in the aligned state. Commercially, a dipole suspension is available from Marks Polarized Corporation as the product Varad. This thesis will investigate the following properties of the dipole suspension Varad: 1) spectral characteristics 2) off-axis properties 3) rise and fall times 4) the dependence of optical density on the voltage and frequency of the electric field Statistically designed experiments were used to investigate the above factors.^ A spectrophotometer was used to investigate the spectral characteristics, with the wavelength, frequency, voltage, and angle of incident light being varied. For the time studies, a dual beam scope was used to monitor the voltage to the dipole suspension and the transmittance simultaneously. Photographs made from the oscilloscope were used to determine the rise and fall times of the Varad. All the data was analysed using statistical regression techniques, but it was not possible to find a model for all the data. The regression models that v/ere found are shown below, along with a short discussion of each. 1) ln(D - 0.6) = 0.9121 - 0.0059 E, where E = the electric field intensity Density changes exponentially as the voltage is increased. 2) ln(D - D0) = 0.1626 - 0.0021 f, where f = frequency (Hz) D0 = minimum density obtained A change in frequency causes the density to change exponentially also, but to a lesser degree than voltage.^ 3) D = 0.4468 + 1.524/cos(w), where w = angle of incidence in degrees As the angle of incidence is increased, the density increases, but the cosine law does not fully account for the changes observed. 4) ln(T - T0) = b0 + b1 E, where T = fall (milliseconds) T0 = minimum fall time b0, b1 are constants Voltage has a very significant effect on both rise and fall times. The higher the voltage the shorter the rise and fall times. Frequency has very little effectt on the rise and fall times, but the effect is large enough to change the estimates of the coefficients b0 and b1. The spectral characteristics could not be fit to a mode because of the complicated relationships that existed. Its nonneutrality makes Varad very questionnable for use in the photographic field."--Abstract.
Subjects
Other Editions
- Microphotonics--Materials, Physics, and Applications: Symposium Held November 27-29, 2000, Boston, Massachusetts, U.S.A (Materials Research Society Symposia Proceedings, V. 637,)
Reader Reviews
No reviews yet for this book.
Be the first to share your thoughts!