Search Results - "von den Hoff, P"
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Effects of multi orbital contributions in the angular-dependent ionization of molecules in intense few-cycle laser pulses
Published in Applied physics. B, Lasers and optics (01-03-2010)“…We outline the details of our new method to calculate angular-dependent ionization probabilities based on electronic structure theory for diatomic and larger…”
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2
Domino Catalysis in the Direct Conversion of Carboxylic Acids to Esters
Published in Advanced synthesis & catalysis (04-08-2008)“…The combined use of high concentration conditions, auxiliary bases, and new catalysts allows for the rapid synthesis of sterically hindered carboxylic acid…”
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3
Attosecond control of electron dynamics in carbon monoxide
Published in Physical review letters (04-09-2009)“…Laser pulses with stable electric field waveforms establish the opportunity to achieve coherent control on attosecond time scales. We present experimental and…”
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4
Waveform control of orientation-dependent ionization of DCl in few-cycle laser fields
Published in Physical chemistry chemical physics : PCCP (01-01-2011)“…Strong few-cycle light fields with stable electric field waveforms allow controlling electrons on time scales down to the attosecond domain. We have studied…”
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5
Subcycle controlled charge-directed reactivity with few-cycle midinfrared pulses
Published in Physical review letters (08-02-2012)“…The steering of electron motion in molecules is accessible with waveform-controlled few-cycle laser light and may control the outcome of light-induced chemical…”
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Journal Article -
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Efficient attosecond control of electron dynamics in molecules
Published in EPJ Web of conferences (01-01-2013)“…We demonstrate how the fast electron dynamics in molecules and hence the reaction of the system can be efficiently manipulated by controlling the temporal…”
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Attosecond control of the dissociative ionization via electron localization: A comparison between and CO
Published in Chemical physics (01-12-2009)Get full text
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Attosecond control of the dissociative ionization via electron localization: A comparison between D 2 and CO
Published in Chemical physics (10-12-2009)“…Laser pulses with stable electric field waveforms establish the opportunity to achieve coherent control on attosecond timescales. A first successful example of…”
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Journal Article -
9
Electron Dynamics and Its Control in Molecules: From Diatomics to Larger Molecular Systems
Published in IEEE journal of selected topics in quantum electronics (01-01-2012)“…Electrons and their dynamics are involved in bond breaking and formation; thus, the idea to steer chemical reactions by localization of electronic wavepackets…”
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Journal Article -
10
Attosecond control of electron dynamics in carbon monoxide
Published 10-10-2009“…Phys.Rev.Lett. 103, 103002 (2009) Laser pulses with stable electric field waveforms establish the opportunity to achieve coherent control on attosecond…”
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Journal Article -
11
The influence of nuclear motion on the electron dynamics in an efficient sub-cycle control of the molecule K2
Published in 2013 Conference on Lasers & Electro-Optics Europe & International Quantum Electronics Conference CLEO EUROPE/IQEC (01-05-2013)“…We highlight the effect of the nuclear motion on the control scheme and in particular on the oscillating dipole…”
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Conference Proceeding -
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Light waveform controlled electron dynamics in the dissociative ionization of CO
Published in CLEO/Europe - EQEC 2009 - European Conference on Lasers and Electro-Optics and the European Quantum Electronics Conference (01-06-2009)“…In this paper, we present theoretical results and analysis of the experimental findings for the direct strong-field control of electronic motion in the…”
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Conference Proceeding -
13
Keldysh-scaling in the waveform control of the dissociative ionization of D2
Published in 2011 Conference on Lasers and Electro-Optics Europe and 12th European Quantum Electronics Conference (CLEO EUROPE/EQEC) (01-05-2011)“…Here we applied this unique light source to study the waveform control of the dissociative ionization of the prototype molecule D 2 at 2.1 μm at an intensity…”
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Conference Proceeding