3,337 research outputs found

    Astrometric and photometric initial mass functions from the UKIDSS Galactic Clusters Survey - II. The Alpha Persei open cluster

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    This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society Ā© 2012 The Authors. Published by Oxford University Press on behalf of the Royal Astronomical Society. All rights reserved.We present the results of a deep (J = 19.1mag) infrared (ZYJHK) survey over the full Ī± Per open cluster extracted from the Data Release 9 of the United Kingdom Infrared Telescope Infrared Deep Sky Survey Galactic Clusters Survey (UKIDSS). We have selected āˆ¼700 cluster member candidates in āˆ¼56 square degrees in Ī± Per by combining photometry in five near-infrared passbands and proper motions derived from the multiple epochs provided by the UKIDSS Galactic Clusters Survey (GCS) Data Release 9 (DR9). We also provide revised membership for all previously published Ī± Per low-mass stars and brown dwarfs recovered in GCS based on the new photometry and astrometry provided by DR9. We find no evidence of K-band variability in members of Ī± Per with dispersion less than 0.06-0.09mag. We employed two independent but complementary methods to derive the cluster luminosity and mass functions: a probabilistic analysis and a more standard approach consisting of stricter astrometric and photometric cuts. We find that the resulting luminosity and mass functions obtained from both methods are consistent. We find that the shape of the Ī± Per mass function is similar to that of the Pleiades although the characteristic mass may be higher after including higher mass data from earlier studies (the dispersion is comparable). We conclude that the mass functions of Ī± Per, the Pleiades and Praesepe are best reproduced by a log-normal representation similar to the system field mass function although with some variation in the characteristic mass and dispersion values.Peer reviewe

    Electrical control of Kondo effect and superconducting transport in a side-gated InAs quantum dot Josephson junction

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    We measure the non-dissipative supercurrent in a single InAs self-assembled quantum dot (QD) coupled to superconducting leads. The QD occupation is both tuned by a back-gate electrode and lateral side-gate. The geometry of the side-gate allows tuning of the QD-lead tunnel coupling in a region of constant electron number with appropriate orbital state. Using the side-gate effect we study the competition between Kondo correlations and superconducting pairing on the QD, observing a decrease in the supercurrent when the Kondo temperature is reduced below the superconducting energy gap in qualitative agreement with theoretical predictions

    Inter-band magnetoplasmons in mono- and bi-layer graphene

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    Collective excitations spectrum of Dirac electrons in mono and bilayer graphene in the presence of a uniform magnetic field is investigated. Analytical results for inter-Landau band plasmon spectrum within the self-consistent-field approach are obtained. SdH type oscillations that are a monotonic function of the magnetic field are observed in the plasmon spectrum of both mono- and bi-layer graphene systems. The results presented are also compared with those obtained in conventional 2DEG. The chiral nature of the quasiparticles in mono and bilayer graphene system results in the observation of Ļ€\pi and 2Ļ€2\pi Berry's phase in the SdH- type oscillations in the plasmon spectrum.Comment: 9 pages, 2 figure

    Superlattice Magnetophonon Resonances in Strongly Coupled InAs/GaSb Superlattices

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    We report an experimental study of miniband magnetoconduction in semiconducting InAs/GaSb superlattices. For samples with miniband widths below the longitudinal optical phonon energy we identify a new superlattice magnetophonon resonance (SLMPR) caused by resonant scattering of electrons across the mini-Brillouin zone. This new resonant feature arises directly from the drift velocity characteristics of the superlattice dispersion and total magnetic quantisation of the superlattice Landau level minibands.Comment: 9 pages, 8 figures, submitted to Phys. Rev.

    Addressing health inequities for same sex attracted women in New South Wales, Australia, who use drugs

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    ACONā€™s Alcohol and Other Drugs Program provides a Needle Syringe Program, peerbased harm reduction programs, drug education targeted at members of the lesbian, gay, bisexual and transgender (LGBT) community, and counselling services. The Lesbian Health Project works with lesbians and other same-sex attracted (SSA) women to improve their health and wellbeing through health promotion, peer education and community development programs as well as providing capacity development for mainstream service providers. In Australia, LGBT people have considerably higher rates of drug use than the general population. While there is considerable funding support from Australian state and federal governments for education interventions that address gay menā€™s drug use, it has been more difficult to address the needs of lesbians and other SSA women. Efforts to address lesbian health needs are hampered by lack of research, poor understanding of the issues by potential funding bodies, and the lack of a single defining health issue (such as HIV among gay men) around which to focus advocacy efforts. Equally problematic is the absence of consideration given to lesbians and SSA women in any Australian national and state health policies. In response to the consistently low uptake of both harm reduction and treatment services by SSA women, ACON has successfully advocated with a major funder of our drug and alcohol work to re-allocate some existing funding to produce SSAwomen specific drug resources, in the interests of equity. This project (currently under development) seeks to engage with networks of SSA women who use drugs and who do not normally access ACONā€™s drugs and alcohol services, to produce resources that ā€˜speak toā€™ their issue

    Gap opening in the zeroth Landau level in gapped graphene: Pseudo-Zeeman splitting in an angular magnetic field

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    We present a theoretical study of gap opening in the zeroth Landau level in gapped graphene as a result of pseudo-Zeeman interaction. The applied magnetic field couples with the valley pseudospin degree of freedom of the charge carriers leading to the pseudo-Zeeman interaction. To investigate its role in transport at the Charge Neutrality Point (CNP), we study the integer quantum Hall effect (QHE) in gapped graphene in an angular magnetic field in the presence of pseudo-Zeeman interaction. Analytical expressions are derived for the Hall conductivity using Kubo-Greenwood formula. We also determine the longitudinal conductivity for elastic impurity scattering in the first Born approximation. We show that pseudo-Zeeman splitting leads to a minimum in the collisional conductivity at high magnetic fields and a zero plateau in the Hall conductivity. Evidence for activated transport at CNP is found from the temperature dependence of the collisional conductivity.Comment: 20 pages, 4 figures, Accepted in J. Phys. Condensed matte
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