logo

EbookBell.com

Most ebook files are in PDF format, so you can easily read them using various software such as Foxit Reader or directly on the Google Chrome browser.
Some ebook files are released by publishers in other formats such as .awz, .mobi, .epub, .fb2, etc. You may need to install specific software to read these formats on mobile/PC, such as Calibre.

Please read the tutorial at this link:  https://ebookbell.com/faq 


We offer FREE conversion to the popular formats you request; however, this may take some time. Therefore, right after payment, please email us, and we will try to provide the service as quickly as possible.


For some exceptional file formats or broken links (if any), please refrain from opening any disputes. Instead, email us first, and we will try to assist within a maximum of 6 hours.

EbookBell Team

Ultrafast Supercontinuum Generation In Transparent Solidstate Media 1st Ed Audrius Dubietis

  • SKU: BELL-10486634
Ultrafast Supercontinuum Generation In Transparent Solidstate Media 1st Ed Audrius Dubietis
$ 31.00 $ 45.00 (-31%)

4.7

26 reviews

Ultrafast Supercontinuum Generation In Transparent Solidstate Media 1st Ed Audrius Dubietis instant download after payment.

Publisher: Springer International Publishing
File Extension: PDF
File size: 5.16 MB
Author: Audrius Dubietis, Arnaud Couairon
Language: English
Year: 2019
Edition: 1st ed.

Product desciption

Ultrafast Supercontinuum Generation In Transparent Solidstate Media 1st Ed Audrius Dubietis by Audrius Dubietis, Arnaud Couairon instant download after payment.

This book presents the underlying physical picture and an overview of the state of the art of femtosecond supercontinuum generation in various transparent solid-state media, ranging from wide-bandgap dielectrics to semiconductor materials, and across various parts of the optical spectrum, from the ultraviolet to the mid-infrared. A particular emphasis is placed on the most recent experimental developments: multioctave supercontinuum generation with pumping in the mid-infrared spectral range, spectral control, power and energy scaling of broadband radiation and the development of simple, flexible and robust pulse compression techniques, which deliver few optical cycle pulses and which could be readily implemented in a variety of modern ultrafast laser systems. The expected audience includes graduate students, professionals and scientists working in the field of laser-matter interactions and ultrafast nonlinear optics.

Related Products