153,067 research outputs found
Light absorption spectra in oligothiophene molecules
Para el dictado de clases, se pueden utilizar diferentes herramientas que nos brindan las nuevas tecnologías; herramientas que nos están modificando los procesos de enseñanza-aprendizaje. Actualmente, hemos pasado de usar internet como una fuente de información a un recurso docente indispensable en el aula. Este artículo se fundamenta en brindar información sobre las herramientas de uso de plataforma web como recurso docente. Las plataformas son aplicables tanto a la enseñanza presencial como a distancia siendo un gran recurso didáctico que enriquece el proceso de enseñanza aprendizaje y facilita la evaluación continua del estudiante.Centro de Investigación en Lectura y Escritura (CILE
Effect of interchain separation on the photoinduced absorption spectra of polycarbazolyldiacetylenes
The photoinduced absorption spectra of a novel polycarbazolyldiacetylene with long aliphatic chains on the carbazolyl side groups are measured and compared with those of the unsubstituted polyDCHD. The two polymers in the blue form exhibit very similar electronic absorption spectra and Raman frequencies. This fact indicates that the conjugation length of the polydiacetylene backbone is not too affected by the long substituents. In contrast, the near steady-state photoinduced absorption spectra show that different photogeneration mechanisms are involved in the two polymers. This result can be ascribed to the role played by the interchain distance in the dynamics of the relaxation processes in polydiacetylenes
Electronic states and optical properties of PbSe nanorods and nanowires
A theory of the electronic structure and excitonic absorption spectra of PbS
and PbSe nanowires and nanorods in the framework of a four-band effective mass
model is presented. Calculations conducted for PbSe show that dielectric
contrast dramatically strengthens the exciton binding in narrow nanowires and
nanorods. However, the self-interaction energies of the electron and hole
nearly cancel the Coulomb binding, and as a result the optical absorption
spectra are practically unaffected by the strong dielectric contrast between
PbSe and the surrounding medium. Measurements of the size-dependent absorption
spectra of colloidal PbSe nanorods are also presented. Using room-temperature
energy-band parameters extracted from the optical spectra of spherical PbSe
nanocrystals, the theory provides good quantitative agreement with the measured
spectra.Comment: 35 pages, 12 figure
Indirect Optical Absorption of Single Crystalline beta-FeSi2
We investigated optical absorption spectra near the fundamental absorption
edge of beta-FeSi2 single crystals by transmission measurements. The phonon
structure corresponding to the emission and absorption component was clearly
observed in the low-temperature absorption spectra. Assuming exciton state in
the indirect allowed transition, we determined a phonon energy of 0.031 +-
0.004 eV. A value of 0.814 eV was obtained for the exciton transition energy at
4K.Comment: 10 pages with 3 figure
Evaluating the New Automatic Method for the Analysis of Absorption Spectra Using Synthetic Spectra
We recently presented a new "artificial intelligence" method for the analysis
of high-resolution absorption spectra (Bainbridge and Webb, Mon. Not. R.
Astron. Soc. 2017, 468,1639-1670). This new method unifies three established
numerical methods: a genetic algorithm (GVPFIT); non-linear least-squares
optimisation with parameter constraints (VPFIT); and Bayesian Model Averaging
(BMA). In this work, we investigate the performance of GVPFIT and BMA over a
broad range of velocity structures using synthetic spectra. We found that this
new method recovers the velocity structures of the absorption systems and
accurately estimates variation in the fine structure constant. Studies such as
this one are required to evaluate this new method before it can be applied to
the analysis of large sets of absorption spectra. This is the first time that a
sample of synthetic spectra has been utilised to investigate the analysis of
absorption spectra. Probing the variation of nature's fundamental constants
(such as the fine structure constant), through the analysis of absorption
spectra, is one of the most direct ways of testing the universality of physical
laws. This "artificial intelligence" method provides a way to avoid the main
limiting factor, i.e., human interaction, in the analysis of absorption
spectra.Comment: 9 pages, 5 figures, published on 5 April 2017 in Univers
Stark effect spectrophone for continuous absorption spectra monitoring
A Stark effect spectrophone using a pulsed or continuous wave laser having a beam with one or more absorption lines of a constituent of an unknown gas is described. The laser beam is directed through windows of a closed cell while the unknown gas to be modified flows continuously through the cell between electric field plates disposed in the cell on opposite sides of the beam path through the cell. When the beam is pulsed, energy absorbed by the gas increases at each point along the beam path according to the spectral lines of the constituents of the gas for the particular field strengths at those points. The pressure measurement at each point during each pulse of energy yields a plot of absorption as a function of electric field for simultaneous detection of the gas constituents. Provision for signal averaging and modulation is included
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