DocumentCode :
738294
Title :
Ultrafast Charge Dynamics in an Amino Acid Induced by Attosecond Pulses
Author :
Calegari, Francesca ; Ayuso, David ; Trabattoni, Andrea ; Belshaw, Louise ; De Camillis, Simone ; Frassetto, Fabio ; Poletto, Luca ; Palacios, Alicia ; Decleva, Piero ; Greenwood, Jason B. ; Martin, Fernando ; Nisoli, Mauro
Author_Institution :
Inst. of Photonics & Nanotechnol., Milan, Italy
Volume :
21
Issue :
5
fYear :
2015
Firstpage :
1
Lastpage :
12
Abstract :
In the past few years, attosecond techniques have been implemented for the investigation of ultrafast dynamics in molecules. The generation of isolated attosecond pulses characterized by a relatively high photon flux has opened up new possibilities in the study of molecular dynamics. In this paper, we report on experimental and theoretical results of ultrafast charge dynamics in a biochemically relevant molecule, namely, the amino acid phenylalanine. The data represent the first experimental demonstration of the generation and observation of a charge migration process in a complex molecule, where electron dynamics precede nuclear motion. The application of attosecond technology to the investigation of electron dynamics in biologically relevant molecules represents a multidisciplinary work, which can open new research frontiers: those in which few-femtosecond and even subfemtosecond electron processes determine the fate of biomolecules. It can also open new perspectives for the development of new technologies, for example, in molecular electronics, where electron processes on an ultrafast temporal scale are essential to trigger and control the electron current on the scale of the molecule.
Keywords :
bio-optics; biochemistry; charge exchange; high-speed optical techniques; macromolecules; molecular biophysics; molecular electronics; organic compounds; photon collisions; quantum optics; amino acid phenylalanine; attosecond pulse generation; attosecond pulse-induced amino acid; attosecond technique implementation; attosecond technology application; biochemically-relevant molecule; biomolecule fate determination; charge migration process generation; charge migration process observation; electron dynamics investigation; experimental demonstration; few-femtosecond electron process; isolated attosecond pulse; molecular charge migration process; molecular dynamics analysis; molecular dynamics investigation; molecular electron dynamics; molecular electronics development; multidisciplinary work; nuclear motion-associated electron dynamics; photon flux-characterized attosecond pulse; research frontier; subfemtosecond electron process; temporal scale-controlled electron current; temporal scale-triggered electron current; ultrafast charge dynamics experimental results; ultrafast charge dynamics theoretical results; ultrafast molecular dynamics; ultrafast temporal electron process scale; Amino acids; Delays; Extraterrestrial measurements; Ionization; Measurement by laser beam; Probes; Pulse measurements; Molecular physics; attosecond; extreme-ultraviolet (XUV) spectroscopy; femtosecond; high harmonics; ultrafast optics;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2015.2419218
Filename :
7078880
Link To Document :
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