electron ejection
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Science ◽  
2020 ◽  
Vol 370 (6514) ◽  
pp. 339-341 ◽  
Author(s):  
Sven Grundmann ◽  
Daniel Trabert ◽  
Kilian Fehre ◽  
Nico Strenger ◽  
Andreas Pier ◽  
...  

Photoionization is one of the fundamental light-matter interaction processes in which the absorption of a photon launches the escape of an electron. The time scale of this process poses many open questions. Experiments have found time delays in the attosecond (10−18 seconds) domain between electron ejection from different orbitals, from different electronic bands, or in different directions. Here, we demonstrate that, across a molecular orbital, the electron is not launched at the same time. Rather, the birth time depends on the travel time of the photon across the molecule, which is 247 zeptoseconds (1 zeptosecond = 10−21 seconds) for the average bond length of molecular hydrogen. Using an electron interferometric technique, we resolve this birth time delay between electron emission from the two centers of the hydrogen molecule.


Atoms ◽  
2020 ◽  
Vol 8 (3) ◽  
pp. 38
Author(s):  
Adam Prior ◽  
Henri Bachau ◽  
Lampros A. A. Nikolopoulos

In this work, we develop and apply an ab-initio method to calculate the joint radial- and- angular electron distributions following the interaction of two-electron spherical quantum dots (QD) with intense terahertz pulses of subpicosecond duration. By applying the method to two QDs of different size, we could investigate two particular ionization mechanisms: the direct and the sequential two-photon double ionization. According to our results, the two ionization mechanisms show some similarity in the angular distribution patterns, whereas the corresponding radial distributions are distinctly different, associated with their joint kinetic energy spectrum. We also discuss the time-evolution of the ionization process in the context of the different nature of the interaction of the QD with the external radiation and the electron–electron correlation interactions.


Molecules ◽  
2020 ◽  
Vol 25 (14) ◽  
pp. 3157
Author(s):  
Kelechi O. Uleanya ◽  
Rosaria Cercola ◽  
Maria Nikolova ◽  
Edward Matthews ◽  
Natalie G. K. Wong ◽  
...  

We present the first study to measure the dissociative photochemistry of 2-thiouracil (2-TU), an important nucleobase analogue with applications in molecular biology and pharmacology. Laser photodissociation spectroscopy is applied to the deprotonated and protonated forms of 2-TU, which are produced in the gas-phase using electrospray ionization mass spectrometry. Our results show that the deprotonated form of 2-thiouracil ([2-TU-H]−) decays predominantly by electron ejection and hence concomitant production of the [2-TU-H]· free-radical species, following photoexcitation across the UVA-UVC region. Thiocyanate (SCN−) and a m/z 93 fragment ion are also observed as photodecay products of [2-TU-H]− but at very low intensities. Photoexcitation of protonated 2-thiouracil ([2-TU·H]+) across the same UVA-UVC spectral region produces the m/z 96 cationic fragment as the major photofragment. This ion corresponds to ejection of an HS· radical from the precursor ion and is determined to be a product of direct excited state decay. Fragment ions associated with decay of the hot ground state (i.e., the ions we would expect to observe if 2-thiouracil was behaving like UV-dissipating uracil) are observed as much more minor products. This behaviour is consistent with enhanced intersystem crossing to triplet excited states compared to internal conversion back to the ground state. These are the first experiments to probe the effect of protonation/deprotonation on thionucleobase photochemistry, and hence explore the effect of pH at a molecular level on their photophysical properties.


2018 ◽  
Vol 210 ◽  
pp. 281-287 ◽  
Author(s):  
Di Huang ◽  
Quanfeng He ◽  
Jie-Jie Shan ◽  
Matthew Sartin ◽  
Ran Pang ◽  
...  

We used a surface-plasmon-active gold-mushroom-array as a working electrode and observed enhanced faradaic current from ferrocenemethanol following illumination with a xenon lamp. The photoelectric current behaved differently in the presence and absence of oxygen in the solution.


2016 ◽  
Vol 23 (6) ◽  
pp. 063119 ◽  
Author(s):  
M. Thévenet ◽  
H. Vincenti ◽  
J. Faure
Keyword(s):  

2014 ◽  
Vol 47 (21) ◽  
pp. 215201 ◽  
Author(s):  
A Hasan ◽  
S Sharma ◽  
T P Arthanayaka ◽  
B R Lamichhane ◽  
J Remolina ◽  
...  

2014 ◽  
Vol 5 (10) ◽  
pp. 1666-1671 ◽  
Author(s):  
Rodolphe Antoine ◽  
Quentin Enjalbert ◽  
Luke MacAleese ◽  
Philippe Dugourd ◽  
Alexandre Giuliani ◽  
...  

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