926 research outputs found

    Nonstatistical dynamics on potentials exhibiting reaction path bifurcations and valley-ridge inflection points

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    We study reaction dynamics on a model potential energy surface exhibiting post-transition state bifurcation in the vicinity of a valley ridge inflection point. We compute fractional yields of products reached after the VRI region is traversed, both with and without dissipation. It is found that apparently minor variations in the potential lead to significant changes in the reaction dynamics. Moreover, when dissipative effects are incorporated, the product ratio depends in a complicated and highly non-monotonic fashion on the dissipation parameter. Dynamics in the vicinity of the VRI point itself play essentially no role in determining the product ratio, except in the highly dissipative regime.Comment: 33 pages, 10 figures, corrected the author name in reference [6

    Groundwater microflora of the Aptian-Cenomanian deposits at the Igolsko-Talovoe field in Tomsk Region

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    The authors have studied the microbiological composition of the groundwater of the Aptian-Cenomanian deposits in the territory of the Igolsko-Talovoe field in Tomsk Region. The detected diversity of the physiological groups of bacteria can be a corrosive component for waters used in the reservoir pressure maintenance system. The research findings have allowed making conclusions about the need to study the contribution of all microorganisms inhabiting the waters of the Aptian-Cenomanian deposits to corrosion

    Die Toponomastik von Tomsk: zur Schaffung von Mehrsprachigen Parallelkorpora

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    Photothermal treatment of cutaneous lesions

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    This thesis reviews the understanding of the processes involved in the laser treatment of cutaneous blemishes. The current treatment protocol for the treatment of vascular lesions - double scanning with transient blanching used at St George's Hospital is shown to give excellent results. The protocol takes advantage of the precise control provided by the SCANALL automatic scanner and the 5 W, 578 nm output of the copper vapour laser. The clinical endpoint - transient blanching - is shown to be due to a temporary halting of blood flow (probably by vasoconstriction) rather than coagulation necrosis of overlying tissues. Various models of the laser treatment of vascular lesions are presented and examined. A histological study of the double scanning, transient blanching protocol shows that tissue damage is confined to vascular and perivascular tissue. Cosmetic lightening is due to a reduction in both the number and size of the vessels in the upper dermis. The protocol is also investigated by interview and postal survey. The incidence of adverse effects is small. For example, there are only two 1 cm² adverse skin texture changes in 64000cm² of treated area. Patients receiving treatment for telangiectasia and spider naevus are satisfied with the outcome after one or two treatments, but many with port-wine stain cease treatment after four sessions when government funding runs out. Patient perception of the success is compared with the surgeon's perception. Patients often needed to be reminded of the size and severity of their original lesion with a photograph. The thesis reports on a parallel investigation of the use of millisecond scale pulses of white light for the treatment of tattoos. A xenon flash-lamp system is designed, constructed, and used in a clinical trial. This includes building pulse forming networks to produce rectangular current pulses of differing lengths. During the clinical trial the system produced a strong inflammatory response in the skin adjacent to the pigment, and lightening of the tattoo. Modelling, histology and other literature studies lead to the conclusion that the pulse length is too long to cause the explosive rupture of pigment-containing cells observed after Q-switched laser treatment, and too short to cause sufficient necrosis and phagocytosis of the pigment-containing cells for it to be useful clinically. The thesis also describes the construction of a device to measure muscle tension during tendon transfer surgery. The device uses diffraction to measure the separation of the fundamental unit of muscle tissue - the sarcomere

    Isomerization dynamics of a buckled nanobeam

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    We analyze the dynamics of a model of a nanobeam under compression. The model is a two mode truncation of the Euler-Bernoulli beam equation subject to compressive stress. We consider parameter regimes where the first mode is unstable and the second mode can be either stable or unstable, and the remaining modes (neglected) are always stable. Material parameters used correspond to silicon. The two mode model Hamiltonian is the sum of a (diagonal) kinetic energy term and a potential energy term. The form of the potential energy function suggests an analogy with isomerisation reactions in chemistry. We therefore study the dynamics of the buckled beam using the conceptual framework established for the theory of isomerisation reactions. When the second mode is stable the potential energy surface has an index one saddle and when the second mode is unstable the potential energy surface has an index two saddle and two index one saddles. Symmetry of the system allows us to construct a phase space dividing surface between the two "isomers" (buckled states). The energy range is sufficiently wide that we can treat the effects of the index one and index two saddles in a unified fashion. We have computed reactive fluxes, mean gap times and reactant phase space volumes for three stress values at several different energies. In all cases the phase space volume swept out by isomerizing trajectories is considerably less than the reactant density of states, proving that the dynamics is highly nonergodic. The associated gap time distributions consist of one or more `pulses' of trajectories. Computation of the reactive flux correlation function shows no sign of a plateau region; rather, the flux exhibits oscillatory decay, indicating that, for the 2-mode model in the physical regime considered, a rate constant for isomerization does not exist.Comment: 42 pages, 6 figure

    Electron attachment to SF6 and lifetimes of SF6- negative ions

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    We study the process of low-energy electron capture by the SF6 molecule. Our approach is based on the model of Gauyacq and Herzenberg [J. Phys. B 17, 1155 (1984)] in which the electron motion is coupled to the fully symmetric vibrational mode through a weakly bound or virtual s state. By tuning the two free parameters of the model, we achieve an accurate description of the measured electron attachment cross section and good agreement with vibrational excitation cross sections of the fully symmetric mode. An extension of the model provides a limit on the characteristic time of intramolecular vibrational relaxation in highly-excited SF6-. By evaluating the total vibrational spectrum density of SF6-, we estimate the widths of the vibrational Feshbach resonances of the long-lived negative ion. We also analyse the possible distribution of the widths and its effect on the lifetime measurements, and investigate nonexponential decay features in metastable SF6-.Comment: 22 pages, 10 figures, submitted to Phys. Rev.

    On Justification, Idealization, and Discursive Purchase

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    Conceptions of acceptability-based moral or political justification take it that authoritative acceptability, widely conceived, constitutes, or contributes to, validity, or justification. There is no agreement as to what bar for authoritativeness such justification may employ. The paper engages the issue in relation to (i) the level of idealization that a bar for authoritativeness, ψ, imparts to a standard of acceptability-based justification, S, and (ii) the degree of discursive purchase of the discursive standing that S accords to people when it builds ψ. I argue that (i) and (ii) are interdependent: high idealization values entail low discursive purchase, while high degrees of purchase require low idealization values. I then distinguish between alethic conceptions of justification that prioritize ends that commit to high idealization values, and recognitive conceptions that favor high discursive purchase. On this basis, I argue for a moderately recognitivist constraint on idealization. To render the recognitive discursive minimum available to relevant people at the site of justification, S should set ψ low enough so that it is a genuine option for actual people to reject relevant views in ways that S recognizes as authoritative. (The Appendix applies this to a Forst-type view of reciprocity of reasons to draw out some limitations of this view.) [Draft available from author on request.

    Media, Capabilities, and Justification

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    In this paper, I evaluate the ‘capability approach’ developed by Amartya Sen and Martha Nussbaum as a normative perspective for critical media research. The concept of capabilities provides a valuable way of assessing media and captures important aspects of the relationship between media and equality. However, following Rainer Forst’s critique of outcome- oriented approaches to justice, I argue the capability approach needs to pay more attention to questions of power and process. In particular, when it comes to deciding which capabilities media should promote and what media structure and practices should promote them, the capability approach must accept the priority of deliberative and democratic processes of justification. Once we do this, we are urged to situate the concept of capabilities within a more process-oriented view of justice, focused not on capabilities as such, but on outlining the conditions required for justificatory equality. After discussing the capability approach, I will outline the process-oriented theory of justice Forst has developed around the idea of the ‘right to justification’. While Forst does not discuss media in depth, I argue his theory of justice can provide a valuable alternative normative standpoint for the critical media research

    Gaussian excitations model for glass-former dynamics and thermodynamics

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    We describe a model for the thermodynamics and dynamics of glass-forming liquids in terms of excitations from an ideal glass state to a Gaussian manifold of configurationally excited states. The quantitative fit of this three parameter model to the experimental data on excess entropy and heat capacity shows that ``fragile'' behavior, indicated by a sharply rising excess heat capacity as the glass transition is approached from above, occurs in anticipation of a first-order transition -- usually hidden below the glass transition -- to a ``strong'' liquid state of low excess entropy. The dynamic model relates relaxation to a hierarchical sequence of excitation events each involving the probability of accumulating sufficient kinetic energy on a separate excitable unit. Super-Arrhenius behavior of the relaxation rates, and the known correlation of kinetic with thermodynamic fragility, both follow from the way the rugged landscape induces fluctuations in the partitioning of energy between vibrational and configurational manifolds. A relation is derived in which the configurational heat capacity, rather than the configurational entropy of the Adam Gibbs equation, controls the temperature dependence of the relaxation times, and this gives a comparable account of the experimental observations.Comment: 21 pp., 17 fig

    Attosecond electron thermalization by laser-driven electron recollision in atoms

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    Nonsequential multiple ionization of atoms in intense laser fields is initiated by a recollision between an electron, freed by tunneling, and its parent ion. Following recollision, the initial electron shares its energy with several bound electrons. We use a classical model based on rapid electron thermalization to interpret recent experiments. For neon, good agreement with the available data is obtained with an upper bound of 460 attoseconds for the thermalization time.Comment: 5 pages revtex and 4 figures (eps files
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