3,870 research outputs found

    In situ Characterization of Nanoparticles Using Rayleigh Scattering

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    We report a theoretical analysis showing that Rayleigh scattering could be used to monitor the growth of nanoparticles under arc discharge conditions. We compute the Rayleigh scattering cross sections of the nanoparticles by combining light scattering theory for gas-particle mixtures with calculations of the dynamic electronic polarizability of the nanoparticles. We find that the resolution of the Rayleigh scattering probe is adequate to detect nanoparticles as small as C60 at the expected concentrations of synthesis conditions in the arc periphery. Larger asymmetric nanoparticles would yield brighter signals, making possible to follow the evolution of the growing nanoparticle population from the evolution of the scattered intensity. Observable spectral features include characteristic resonant behaviour, shape-dependent depolarization ratio, and mass-dependent line shape. Direct observation of nanoparticles in the early stages of growth with unobtrusive laser probes should give insight on the particle formation mechanisms and may lead to better-controlled synthesis protocols

    Exact infinite-time statistics of the Loschmidt echo for a quantum quench

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    The equilibration dynamics of a closed quantum system is encoded in the long-time distribution function of generic observables. In this paper we consider the Loschmidt echo generalized to finite temperature, and show that we can obtain an exact expression for its long-time distribution for a closed system described by a quantum XY chain following a sudden quench. In the thermodynamic limit the logarithm of the Loschmidt echo becomes normally distributed, whereas for small quenches in the opposite, quasi-critical regime, the distribution function acquires a universal double-peaked form indicating poor equilibration. These findings, obtained by a central limit theorem-type result, extend to completely general models in the small-quench regime.Comment: 4 pages, 2 figure

    Leadership and Organizational Culture Analysis on Organizational Citizenship Behavior (OCB) at PT. Hatten Bali

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    This study aimed to analyze the influence of leadership and organizational culture on Organizational Citizenship Behavior employees. The study is a quantitative research. The data used in this study was collected through questionnaires and implemented to 106 of permanent employees in PT. Hatten Bali. The results of this study indicates that: 1) leadership have positive and significant effect on organizational citizenship behavior which indicated by coefficient regression value 0,297 and significant value 0,003, 2) organizational culture have positive and significant effect on organizational citizenship behavior which indicated by coefficient regression value 0,144 and significant value 0,039, and 3) leadership and organizational culture have simultaneously effect on organizational citizenship behavior which indicated by f-count value 6,846 > f-table and significant value 0,002. Regression analyze result adjusted R2 value 0,117. This indicates that organizational citizenship behavior can explained by leadership and organizational culture variable of 11,7 % while the remaining 88,3% explained by the others variable outside of this study. Penelitian ini bertujuan untuk menganalisis pengaruh kepemimpinan dan budaya organisasi terhadap perilaku organizational citizenship behavior. Penelitian ini merupakan penelitian kuantitatif. Data dalam penelitian ini dikumpulkan melalui kuesioner dan didistribusikan kepada 106 pegawai tetap PT. Hatten Bali. Hasil penelitian ini menunjukkan bahwa: 1) kepemimpinan memiliki pengaruh positif dan signifikan terhadap perilaku kewargaan organisasional ditunjukkan oleh nilai koefisien regresi 0,297 dan nilai signifikan 0,003, 2) budaya organisasi berpengaruh positif dan signifikan terhadap perilaku kewarganegaraan organisasional ditunjukkan oleh nilai koefisien regresi 0,144 dan signifikansi 0,039, dan 3) kepemimpinan dan budaya organisasi berpengaruh secara simultan terhadap perilaku kewargaan organisasional yang ditunjukkan oleh nilai f hitung 6,846>f-tabel dan nilai signifikan 0,002. Hasil analisis regresi disesuaikan dengan nilai R2 0,117. Hal ini mengindikasikan bahwa perilaku kewargaan organisasional dapat dijelaskan oleh variabel kepemimpinan dan budaya organisasi sebesar 11,7% sedangkan sisanya 88,3% dijelaskan oleh variabel lain di luar penelitian ini

    Studies of the 1^{1}S0_{0}--3^3P0_0 transition in atomic ytterbium for optical clocks and qubit arrays

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    We report an observation of the weak 616^{1}S0_{0}-636^3P0_0 transition in 171,173^{171,173}Yb as an important step to establish Yb as a primary candidate for future optical frequency standards, and to open up a new approach for qubits using the 1^{1}S0_{0} and 3^3P0_0 states of Yb atoms in an optical lattice.Comment: 5 pages, 3 figure

    Coulombic Energy Transfer and Triple Ionization in Clusters

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    Using neon and its dimer as a specific example, it is shown that excited Auger decay channels that are electronically stable in the isolated monomer can relax in a cluster by electron emission. The decay mechanism, leading to the formation of a tricationic cluster, is based on an efficient energy-transfer process from the excited, dicationic monomer to a neighbor. The decay is ultrafast and expected to be relevant to numerous physical phenomena involving core holes in clusters and other forms of spatially extended atomic and molecular matter.Comment: 5 pages, 1 figure, to be published in PR

    Prospects for discovering supersymmetric long-lived particles with MoEDAL

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    We present a study on the possibility of searching for long-lived supersymmetric partners with the MoEDAL experiment at the LHC. MoEDAL is sensitive to highly ionising objects such as magnetic monopoles or massive (meta)stable electrically charged particles. We focus on prospects of directly detecting long-lived sleptons in a phenomenologically realistic model which involves an intermediate neutral long-lived particle in the decay chain. This scenario is not yet excluded by the current data from ATLAS or CMS, and is compatible with astrophysical constraints. Using Monte Carlo simulation, we compare the sensitivities of MoEDAL versus ATLAS in scenarios where MoEDAL could provide discovery reach complementary to ATLAS and CMS, thanks to looser selection criteria combined with the virtual absence of background. It is also interesting to point out that, in such scenarios, in which charged staus are the main long-lived candidates, the relevant mass range for MoEDAL is compatible with a potential role of Supersymmetry in providing an explanation for the anomalous events observed by the ANITA detector.Comment: 12 pages, 6 figures; preliminary results presented in arXiv:1903.11022; matches published version in EPJ

    Siegert pseudostates: completeness and time evolution

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    Within the theory of Siegert pseudostates, it is possible to accurately calculate bound states and resonances. The energy continuum is replaced by a discrete set of states. Many questions of interest in scattering theory can be addressed within the framework of this formalism, thereby avoiding the need to treat the energy continuum. For practical calculations it is important to know whether a certain subset of Siegert pseudostates comprises a basis. This is a nontrivial issue, because of the unusual orthogonality and overcompleteness properties of Siegert pseudostates. Using analytical and numerical arguments, it is shown that the subset of bound states and outgoing Siegert pseudostates forms a basis. Time evolution in the context of Siegert pseudostates is also investigated. From the Mittag-Leffler expansion of the outgoing-wave Green's function, the time-dependent expansion of a wave packet in terms of Siegert pseudostates is derived. In this expression, all Siegert pseudostates--bound, antibound, outgoing, and incoming--are employed. Each of these evolves in time in a nonexponential fashion. Numerical tests underline the accuracy of the method

    Sensitivity of nonlinear photoionization to resonance substructure in collective excitation

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    Collective behaviour is a characteristic feature in many-body systems, important for developments in fields such as magnetism, superconductivity, photonics and electronics. Recently, there has been increasing interest in the optically nonlinear response of collective excitations. Here we demonstrate how the nonlinear interaction of a many-body system with intense XUV radiation can be used as an effective probe for characterizing otherwise unresolved features of its collective response. Resonant photoionization of atomic xenon was chosen as a case study. The excellent agreement between experiment and theory strongly supports the prediction that two distinct poles underlie the giant dipole resonance. Our results pave the way towards a deeper understanding of collective behaviour in atoms, molecules and solid-state systems using nonlinear spectroscopic techniques enabled by modern short-wavelength light sources
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