Ultrafast Phenomena V
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"Ultrafast Phenomena V" by Graham R. Fleming, Anthony E. Siegman is a physics book focused on Light & Optics. Best for students, educators, and scientifically curious readers.
The first Optical Society of America (OSA) Topical Meeting on Picosec ond Phenomena, held at Hilton Head, South Carolina, in 1978, brought together in a congenial setting an interdisciplinary group of laser engineers and physicists who were exploring the emerging technologies for generat ing and applying picosecond optical pulses, together with scientists from the fields of chemistry, physics, biology, and electronics who saw in those pulses capabilities for studying atomic and molecular phenomena on time scales previously unrealizable. The technology in this field has since developed even more rapidly and remarkably than foreseen eight years ago, and the applications to science and technology, in physics, chemistry, biology, electronics, and commu nications, have proven to be equally extraordinary. Optical pulses with pulse widths shorter than 10 femtosecond - only a few optical cycles in du ration - along with mono cycle infrared pulses, complex nonlinear optical solitons, electrooptic techniques with subpicosecond time resolutions, and a full toolkit of measurement and detection techniques have now emerged, including new methods for making ultrafast measurements in some cases even without ultrafast optical pulses. These tools are now being widely applied to study the internal motions of complex molecules and atomic lat tices, the relaxation times of superheated electrons in solids, the ultrafast dynamics of chemical reactions, the excited-state lifetimes of photosyn thetic and visual pigments, and the response times of the fastest electronic circuits yet developed.
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"Ultrafast Phenomena V" by Graham R. Fleming, Anthony E. Siegman is a physics book focused on Light & Optics. Best for students, educators, and scientifically curious readers.
Topic: Light & Optics
Author: Graham R. Fleming, Anthony E. Siegman
Who this is for:
- Physics students
- Science-minded readers
- Readers building technical understanding
Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.
The first Optical Society of America (OSA) Topical Meeting on Picosec ond Phenomena, held at Hilton Head, South Carolina, in 1978, brought together in a congenial setting an interdisciplinary group of laser engineers and physicists who were exploring the emerging technologies for generat ing and applying picosecond optical pulses, together with scientists from the fields of chemistry, physics, biology, and electronics who saw in those pulses capabilities for studying atomic and molecular phenomena on time scales previously unrealizable. The technology in this field has since developed even more rapidly and remarkably than foreseen eight years ago, and the applications to science and technology, in physics, chemistry, biology, electronics, and commu nications, have proven to be equally extraordinary. Optical pulses with pulse widths shorter than 10 femtosecond - only a few optical cycles in du ration - along with mono cycle infrared pulses, complex nonlinear optical solitons, electrooptic techniques with subpicosecond time resolutions, and a full toolkit of measurement and detection techniques have now emerged, including new methods for making ultrafast measurements in some cases even without ultrafast optical pulses. These tools are now being widely applied to study the internal motions of complex molecules and atomic lat tices, the relaxation times of superheated electrons in solids, the ultrafast dynamics of chemical reactions, the excited-state lifetimes of photosyn thetic and visual pigments, and the response times of the fastest electronic circuits yet developed.
| Author | Graham R. Fleming, Anthony E. Siegman |
| Publisher | Springer |
| Published | 2014-08-23 |
| ISBN-13 | 9783642829208 |
| Binding | Paperback |
| Pages | 555 |
| Language | English |
| Subjects | Technology & Engineering |
| Topic | Light & Optics |
| Series | Springer Chemical Physics |
Format: Paperback
Length: 555 pages
Language: English
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