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Dive into the research topics where Marie Lopez del Puerto is active.

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Featured researches published by Marie Lopez del Puerto.


Journal of Chemical Physics | 2007

Ab initio calculation of temperature effects in the optical response of open-shell sodium clusters

Marie Lopez del Puerto; Murilo L. Tiago; James R. Chelikowsky

Many properties of atomic clusters have been found to be size dependent, e.g., the optical response. There are, however, factors other than size that can also play an important role in determining the properties of nanoscale systems. Temperature, in particular, has been shown to have a strong effect on the optical response of open-shell sodium clusters. We incorporate the temperature effect on the optical absorption spectra by combining pseudopotentials, Langevin molecular dynamics, and time-dependent density functional theory. We have done calculations for several open-shell sodium clusters, Na(4) (+), Na(7) (+), and Na(11) (+), for which experimental data are available for comparison. We find that the positions of the lower energy peaks of the calculated spectra correspond very well to the peaks in the experimental spectra, although the local density approximation tends to overestimate the gap of the smaller clusters by up to 0.2 eV and underestimate the gap of the largest cluster by 0.4 eV. We fit the width of the peaks in the lower-temperature calculations to the corresponding experimental result to obtain the instrumental linewidth. We then use this same width for the high-temperature calculations and find very good agreement with experiment. Finally, we analyze the transitions that contribute to the observed peaks in the absorption spectra and we plot the effective valence charge density for specific transitions for each cluster. We find that for the two smaller clusters the absorption spectra are dominated by transitions from the occupied levels to a few (three for Na(4) (+) and five for Na(7) (+)) empty levels, although the contribution from transitions to other empty levels can still be significant. In contrast, the absorption spectra for Na(11) (+) come from a greater mixture of transitions as evidenced in the analysis as well as in the plot of the effective valence charge density.


Physical Review Letters | 2006

Excitonic effects and optical properties of passivated CdSe clusters.

Marie Lopez del Puerto; Murilo L. Tiago; James R. Chelikowsky


Physical Review B | 2008

Ab initio methods for the optical properties of CdSe clusters

Marie Lopez del Puerto; Murilo L. Tiago; James R. Chelikowsky


Nano Letters | 2006

Symmetry considerations in CdSe nanocrystals

Gustavo M. Dalpian; Murilo L. Tiago; Marie Lopez del Puerto; James R. Chelikowsky


Physical Review B | 2010

Time-dependent density functional theory calculations for the Stokes shift in hydrogenated silicon clusters

Marie Lopez del Puerto; Manish Jain; James R. Chelikowsky


Physical Review A | 2005

Real-space pseudopotential calculations of the ground-state and excited-state properties of the water molecule

Marie Lopez del Puerto; Murilo L. Tiago; Igor Vasiliev; James R. Chelikowsky


Bulletin of the American Physical Society | 2017

Computation in Physics: Resources and Support

Larry Engelhardt; Marcos D. Caballero; Norman Chonacky; Robert C. Hilborn; Marie Lopez del Puerto; K.R. Roos


Bulletin of the American Physical Society | 2017

Computation as Part of a Balanced Undergraduate Physics Curriculum

Marie Lopez del Puerto


Bulletin of the American Physical Society | 2009

Ab initio calculation of Stokes shifts of hydrogenated silicon clusters

Marie Lopez del Puerto; Manish Jain; James R. Chelikowsky


Bulletin of the American Physical Society | 2007

Excitonic effects and optical properties of passivated CdSe clusters

Marie Lopez del Puerto; Murilo L. Tiago; James R. Chelikowsky

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James R. Chelikowsky

University of Texas at Austin

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Murilo L. Tiago

Oak Ridge National Laboratory

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Manish Jain

All India Institute of Medical Sciences

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Gustavo M. Dalpian

Universidade Federal do ABC

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Igor Vasiliev

New Mexico State University

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Marcos D. Caballero

University of Colorado Boulder

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