Imaging Strong Field Induced Molecular Dynamics PDF Download

Are you looking for read ebook online? Search for your book and save it on your Kindle device, PC, phones or tablets. Download Imaging Strong Field Induced Molecular Dynamics PDF full book. Access full book title Imaging Strong Field Induced Molecular Dynamics.

Resolving Strong Field Dynamics in Cation States of CO_2 via Optimised Molecular Alignment

Resolving Strong Field Dynamics in Cation States of CO_2 via Optimised Molecular Alignment
Author: Malte Oppermann
Publisher: Springer Science & Business Media
Total Pages: 218
Release: 2014-04-01
Genre: Science
ISBN: 3319053388

Download Resolving Strong Field Dynamics in Cation States of CO_2 via Optimised Molecular Alignment Book in PDF, ePub and Kindle

This thesis presents an experimental study of the ultrafast molecular dynamics of CO_2^+ that are induced by a strong, near-infrared, femtosecond laser pulse. In particular, typical strong field phenomena such as tunneling ionisation, nonsequential double ionisation and photo-induced dissociation are investigated and controlled by employing an experimental technique called impulsive molecular alignment. Here, a first laser pulse fixes the molecule in space, such that the molecular dynamics can be studied as a function of the molecular geometry with a second laser pulse. The experiments are placed within the context of the study and control of ultrafast molecular dynamics, where sub-femtosecond (10^-15 seconds) resolution in ever larger molecular systems represents the current frontier of research. The thesis presents the required background in strong field and molecular physics, femtosecond laser architecture and experimental techniques in a clear and accessible language that does not require any previous knowledge in these fields.


Studies of Photoinduced Molecular Dynamics Using a Fast Imaging Sensor

Studies of Photoinduced Molecular Dynamics Using a Fast Imaging Sensor
Author: Craig S. Slater
Publisher: Springer
Total Pages: 194
Release: 2015-10-15
Genre: Science
ISBN: 3319245171

Download Studies of Photoinduced Molecular Dynamics Using a Fast Imaging Sensor Book in PDF, ePub and Kindle

The work presented in this thesis involves a number of sophisticated experiments highlighting novel applications of the Pixel Imaging Mass Spectrometry (PImMS) camera in the field of photoinduced molecular dynamics. This approach represents the union of a new enabling technology (a multiple memory register, CMOS-based pixel detector) with several modern chemical physics approaches and represents a significant leap forward in capabilities. Applications demonstrated include three-dimensional imaging of photofragment Newton spheres, simultaneous electron-ion detection using a single sensor, and ion-ion velocity correlation measurements that open the door to novel covariance imaging experiments. When combined with Coulomb explosion imaging, such an approach is demonstrated to allow the measurement of molecular structure and motion on a femtosecond timescale. This is illustrated through the controlled photoexcitation of torsional motion in biphenyl molecules and the subsequent real-time measurement of the torsional angle.


Attosecond and Strong-Field Physics

Attosecond and Strong-Field Physics
Author: C. D. Lin
Publisher: Cambridge University Press
Total Pages: 419
Release: 2018-05-10
Genre: Science
ISBN: 1107197767

Download Attosecond and Strong-Field Physics Book in PDF, ePub and Kindle

An introductory textbook on attosecond and strong field physics, covering fundamental theory and modeling techniques, as well as future opportunities and challenges.


Ultrafast Imaging of Coherent Molecular Dynamics at the Linac Coherent Light Source

Ultrafast Imaging of Coherent Molecular Dynamics at the Linac Coherent Light Source
Author: James Michael Glownia
Publisher:
Total Pages:
Release: 2012
Genre:
ISBN:

Download Ultrafast Imaging of Coherent Molecular Dynamics at the Linac Coherent Light Source Book in PDF, ePub and Kindle

In this thesis I will describe some of the techniques we have developed to extract coherent vibrational and rotational wavepacket motion from stochastic ultrafast free electron x-ray light sources such as the Linac Coherent Light Source. In the initial experiments we performed, the ultrafast x-rays themselves created vibrational wavepackets that were probed by an ultrafast optical laser, and to the best of our knowledge this is the first example of ultrafast coherent preparation of a wavepacket using x-rays. The x-rays were also utilized to probe rotational wavepackets formed by the optical laser. These findings led to a second series of experiments where we sought to use the x-rays as a probe of non Born-Oppenheimer dynamics. The first time-resolved x-ray/optical pump-probe experiments at the SLAC Linac Coherent Light Source (LCLS) used a combination of feedback methods and post-analysis binning techniques to synchronize an ultrafast optical laser to the linac-based x-ray laser. Transient molecular nitrogen alignment revival features produced by coherent rotational wavepackets were resolved in time-dependent x-ray-induced fragmentation spectra. These alignment features were used to find the temporal overlap of the pump and probe pulses. The strong-field dissociation of x-ray generated quasi-bound molecular dications was used to establish the residual timing jitter. This analysis shows that the relative arrival time of the Ti:Sapphire laser and the x-ray pulses had a distribution with a standard deviation of approximately 120 fs. To overcome this limitation we analyzed the ion time of flight traces using a manifold embedding and nonlinear singular value decomposition techniques in collaboration with Abbas Ourmazd and Russell Fung at the University of Wisconsin Milwaukee. This analysis automatically separated the alignment and dication dissociation dynamics from the data, and it revealed fast dynamics that we can attribute to coherent vibrational wavepackets that were created by the ultrafast x-rays and probed by the optical laser. A second study we performed looked at the feasibility of using the LCLS as a fast Coulomb explosion probe of systems undergoing fast laser induced dynamics beyond molecular alignment. As the primary mechanism of energy transfer in natural chemical systems, developing a fundamental understanding of non-radiative excited-state transfer via conical-intersections is of utmost importance for many fields such as biochemistry, alternative energy research, and quantum control. In general, the relevant chemical systems are complex and the exact energy transfer pathways are hard to discriminate from other dynamics. We conducted an experiment to use ultrafast optical and x-ray lasers to induce and observe time resolved molecular dynamics of an optically induced conical-intersection in a prototype system of molecular iodine. Few-femtosecond x-ray pulses from the LCLS then rapidly ionized the molecules without additional strong-field dressing of the potential energy surfaces under investigation. We used optically-dressed molecular iodine as a well controllable analog of a natural conical-intersections. Additionally, we implemented a molecular alignment technique that should prove generally applicable to numerous future LCLS experiments and may compliment condensed-phase x-ray imaging studies of molecular dynamics.


Imaging in Molecular Dynamics

Imaging in Molecular Dynamics
Author: Benjamin J. Whitaker
Publisher: Cambridge University Press
Total Pages: 269
Release: 2003-06-05
Genre: Science
ISBN: 1139437909

Download Imaging in Molecular Dynamics Book in PDF, ePub and Kindle

Charged particle imaging has revolutionized experimental studies of photodissociation and bimolecular collisions over the past couple of decades. Written in a tutorial style by some of the key practitioners in the field, this book gives a comprehensive account of the technique and describes many of its applications.


Ultrafast Phenomena XIV

Ultrafast Phenomena XIV
Author: Takayoshi Kobayashi
Publisher: Springer Science & Business Media
Total Pages: 954
Release: 2005
Genre: Science
ISBN: 9783540241102

Download Ultrafast Phenomena XIV Book in PDF, ePub and Kindle

Ultrafast Phenomena XIV presents the latest advances in ultrafast science, including ultrafast laser and measurement technology as well as studies of ultrafast phenomena. Pico-, femto-, and atosecond processes relevant in physics, chemistry, biology and engineering are presented. Ultrafast technology is now having a profound impact within a wide range of applications, among them imaging, material diagnostics, and transformation and high-speed optoelectronics. This book summarizes results presented at the 14th Ultrafast Phenomena Conference and reviews the state of the art in this important and rapidly advancing field.


Attosecond Molecular Dynamics

Attosecond Molecular Dynamics
Author: Marc J J Vrakking
Publisher: Royal Society of Chemistry
Total Pages: 512
Release: 2018-08-31
Genre: Science
ISBN: 1788015134

Download Attosecond Molecular Dynamics Book in PDF, ePub and Kindle

Attosecond science is a new and rapidly developing research area in which molecular dynamics are studied at the timescale of a few attoseconds. Within the past decade, attosecond pump–probe spectroscopy has emerged as a powerful experimental technique that permits electron dynamics to be followed on their natural timescales. With the development of this technology, physical chemists have been able to observe and control molecular dynamics on attosecond timescales. From these observations it has been suggested that attosecond to few-femtosecond timescale charge migration may induce what has been called “post-Born-Oppenheimer dynamics”, where the nuclei respond to rapidly time-dependent force fields resulting from transient localization of the electrons. These real-time observations have spurred exciting new advances in the theoretical work to both explain and predict these novel dynamics. This book presents an overview of current theoretical work relevant to attosecond science written by theoreticians who are presently at the forefront of its development. It is a valuable reference work for anyone working in the field of attosecond science as well as those studying the subject.


Molecular Dynamics

Molecular Dynamics
Author: Alexander Vakhrushev
Publisher: BoD – Books on Demand
Total Pages: 102
Release: 2018-08-01
Genre: Computers
ISBN: 1789235243

Download Molecular Dynamics Book in PDF, ePub and Kindle

This book is devoted to a description of the modeling of nanosystems and a detailed exposition of the application of molecular dynamics methods to problems from various fields of technology: material science, the formation of composite molecular complexes, and transport of nanosystems. The research results of the modeling of various nanosystems are presented: soft supramolecular nanostructures, nanosized beams of single-crystal Cu, metallic nanosized crystals, drug delivery systems, and systems stabilized by hydrogen bonds. The information from this book will be useful for engineers, technologists, researchers, and postgraduate students interested in the study of the whole complex of computer simulation based on the concept of molecular dynamics methods for the task of designing and producing nanomaterials with controlled properties.