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Author | Gol'tsman, B. M.; Kutasov, V. A.; Luk'yanova, L. N. | ||||
Title | Mechanism of formation of texture and its influence on the strength of thermoelectric p-Bi0.5Sb1.5Te3 | Type | Journal Article | ||
Year | 2009 | Publication | Physics of the Solid State | Abbreviated Journal | Phys. Sol. St. |
Volume | 51 | Issue | 4 | Pages | 747-749 |
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Abstract | It is established that, in preparing p-Bi0.5Sb1.5Te3 by vertical zone melting, in addition to the directional texture (characteristic of materials exhibiting a highly anisotropic growth rate) in which the cleavage planes of crystal grains are parallel to the direction of propagation of the crystallization front, other texture types can arise, in which the orientation of grain cleavage planes is ordered in a cross-sectional plane of the ingot. Two types of such textures, “radial†and “circular,†were observed. In a radial texture, the lines of intersection of grain cleavage planes with a cross-sectional plane of the ingot are oriented along radii of this cross section and, in a circular texture, these lines of intersection are oriented approximately perpendicular to a radius crossing the grain. The formation of a radial texture is associated with rotation of the ampoule with the crystallizing substance about its vertical axis causing centrifugal flows of the melt. The formation of a circular texture is associated with the orientation effect of the ampoule walls and with circular motion of the melt during torsional oscillations of the ampoule about the vertical axis. Ingots with a radial texture exhibit much lower resistance to splitting along their axis than ingots with a circular texture do. An explanation is provided for this fact. | ||||
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Call Number | RPLAB @ gujma @ | Serial | 726 | ||
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Author | Ожегов, Р.В.; Окунев, О.В.; Гольцман, Г.Н. | ||||
Title | Флуктуационная чувствительность сверхпроводящего болометрического смесителя на эффекте разогрева электронного газа | Type | Journal Article | ||
Year | 2009 | Publication | Радиотехника | Abbreviated Journal | |
Volume | Issue | 3 | Pages | 120-124 | |
Keywords | смеситель на горячих электронах; флуктуационная чувствительность; тепловизор терагерцевого диапазона частот; hot-electron bolometer mixer; Imaging system; Noise equivalent temperature difference; Heterodyne receiver; Terahertz range | ||||
Abstract | Interest in research in the terahertz range is driven by a great number of various applications, where terahertz instruments may play a leading role. To name just a few, such applications include study of the cosmic microwave background radiation and the distribution of the dark matter, medicine, navigation, fire alarm, security systems and environmental monitoring. The paper discusses the possibility of using a receiver based on the hot-electron effect in superconducting films as an imaging system. We present the results of the noise equivalent temperature difference (NETD) measurements performed with a hot-electron bolometer mixer made from a thin superconducting film. The receiver with a noise temperature of ~ 3800 K at a local oscillator frequency of 300 GHz a bandwidth of 500 MHz and an integration time of 1 s has offered an NETD of 0.5 K. We have also developed a technique that enabled us to reduce the contribution of the mixer gain fluctuations to the overall system instability. As of this writing, the above value of the NETD is the lowest value offered for this type of receiver, which indicates the possibility to use such receivers in real-time imaging systems. The technique offered in the paper for achieving the limiting value of the NETD offers an alternative to the phase-locking scheme. Представены результаты измерения флуктуационной чувствительности (NETD – noise equivalent temperature difference) болометрического смесителя на эффекте разогрева электронного газа в тонких сверхпроводящих пленках. Получено предельное значение NETD, равное 0,5 К, при шумовой температуре приемника 3800 К, ширине полосы преобразования 500 МГц, постоянной времени 1 с и частоте гетеродина 300 ГГц. Разработана методика достижения предельной флуктуационной чувствительности, позволяющая избежать влияния нестабильности коэффициента преобразования смесителя. |
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Call Number | RPLAB @ gujma @ | Serial | 728 | ||
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Author | Hu, Xiaolong; Dauler, Eric A.; Kerman, Andrew J.; Yang, Joel K. W.; White, James E.; Herder, Charles H.; Berggren, Karl K. | ||||
Title | Using surface plasmons to enhance the speed and efficiency of superconducting nanowire single-photon detectors | Type | Conference Article | ||
Year | 2009 | Publication | Proceedings of the Conference on Lasers and Electro-Optics, 2009 and 2009 Conference on Quantum electronics and Laser Science Conference | Abbreviated Journal | Proc of Conf. on Lasers and El.-Opt. |
Volume | Issue | Pages | 1-2 | ||
Keywords | optical antennas | ||||
Abstract | We report our design and fabrication of superconducting nanowire single-photon detectors integrated with gold plasmonic nanostructures, which can enhance the absorption of TM-polarized light, and can enlarge the effective area without sacrificing detector speed. | ||||
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Call Number | RPLAB @ gujma @ | Serial | 744 | ||
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Author | Bharadwaj, Palash; Deutsch, Bradley; Novotny, Lukas | ||||
Title | Optical Antennas | Type | Journal Article | ||
Year | 2009 | Publication | Advances in Optics and Photonics | Abbreviated Journal | Adv. Opt. Photon |
Volume | 1 | Issue | Pages | 438-483 | |
Keywords | optical antennas | ||||
Abstract | Optical antennas are an emerging concept in physical optics. Similar to radiowave and microwave antennas, their purpose is to convert the energy of free propagating radiation to localized energy, and vice versa. Optical antennas exploit the unique properties of metal nanostructures, which behave as strongly coupled plasmas at ptical frequencies. The tutorial provides an account of the historical origins and the basic concepts and parameters associated with optical antennas. It also reviews recent work in the field and discusses areas of application, such as light-emitting devices, photovoltaics, and spectroscopy. |
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Call Number | RPLAB @ gujma @ | Serial | 754 | ||
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Author | Esteban, Eduin; Serna, Hernandez | ||||
Title | Quantum key distribution protocol with private-public key | Type | Journal Article | ||
Year | 2009 | Publication | arXiv | Abbreviated Journal | arXiv |
Volume | Issue | Pages | 3 | ||
Keywords | quantum cryptography; QKD; protocol | ||||
Abstract | A quantum cryptographic protocol based in public key cryptography combinations and private key cryptography is presented. Unlike the BB84 protocol 1 and its many variants 2,3 two quantum channels are used. The present research does not make reconciliation mechanisms of information to derive the key. A three related system of key distribution are described. | ||||
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Notes | arXiv: 0908.2146 | Approved | no | ||
Call Number | RPLAB @ gujma @ | Serial | 756 | ||
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Author | Zurek, Wojciech Hubert | ||||
Title | Quantum Darwinism | Type | Journal Article | ||
Year | 2009 | Publication | Nature Physics | Abbreviated Journal | Nat. Phys. |
Volume | 5 | Issue | 3 | Pages | 181-188 |
Keywords | fromIPMRAS | ||||
Abstract | Quantum Darwinism describes the proliferation, in the environment, of multiple records of selected states of a quantum system. It explains how the quantum fragility of a state of a single quantum system can lead to the classical robustness of states in their correlated multitude; shows how effective `wave-packet collapse' arises as a result of the proliferation throughout the environment of imprints of the state of the system; and provides a framework for the derivation of Born's rule, which relates the probabilities of detecting states to their amplitudes. Taken together, these three advances mark considerable progress towards settling the quantum measurement problem. | ||||
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Call Number | RPLAB @ gujma @ | Serial | 799 | ||
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Author | Shor, Peter W. | ||||
Title | Quantum information theory: The bits don't add up | Type | Journal Article | ||
Year | 2009 | Publication | Nature Physics | Abbreviated Journal | Nat. Phys. |
Volume | 5 | Issue | Pages | 247 - 248 | |
Keywords | fromIPMRAS | ||||
Abstract | A counterexample to the 'additivity question', the most celebrated open problem in the mathematical theory of quantum information, casts doubt on the possibility of finding a simple expression for the information capacity of a quantum channel. | ||||
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Call Number | RPLAB @ gujma @ | Serial | 800 | ||
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Author | Trabesinger, Andreas | ||||
Title | Quantum mechanics: Shaken foundations | Type | Journal Article | ||
Year | 2009 | Publication | Nature Physics | Abbreviated Journal | Nat. Phys. |
Volume | 5 | Issue | 12 | Pages | 863 |
Keywords | fromIPMRAS | ||||
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Call Number | RPLAB @ gujma @ | Serial | 802 | ||
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Author | Benford, Dominic; Moseley, Harvey; Zmuidzinas, Jonas | ||||
Title | Direct detectors for the Einstein inflation probe | Type | Conference Article | ||
Year | 2009 | Publication | J. Phys.: Conf. Ser. | Abbreviated Journal | J. Phys.: Conf. Ser. |
Volume | 155 | Issue | 1 | Pages | 012001 (1 to 49) |
Keywords | KID, MKID, CMB | ||||
Abstract | Here we review the principles of operation, history, present status, and future prospects for the primary candidate detectors for Cosmic Microwave Background (CMB) polarization studies. The three detector types we will discuss are semiconductor-based bolometers, superconducting transition edge sensor (TES) bolometer, and Microwave Kinetic Inductance Detectors (MKIDs). All of these detector types can provide the sensitivity to permit background-limited measurements of the CMB, but the ultimate selection of detectors will be largely determined by the ease of production and reliability of large arrays of such detectors. This paper describes the present state of development of these detectors, efforts to integrate them into large arrays, and the detector system developments necessary to enable a space CMB polarization mission. | ||||
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Notes | Recommended by Klapwijk | Approved | no | ||
Call Number | Serial | 913 | |||
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Author | Pekker, David; Shah, Nayana; Sahu, Mitrabhanu; Bezryadin, Alexey; Goldbart, Paul M. | ||||
Title | Stochastic dynamics of phase-slip trains and superconductive-resistive switching in current-biased nanowires | Type | Journal Article | ||
Year | 2009 | Publication | Phys. Rev. B | Abbreviated Journal | |
Volume | 80 | Issue | Pages | 214525 (1 to 17) | |
Keywords | superconducting nanowire, phase-slip, order parameter, HEB distributed model, HEB model | ||||
Abstract | Superconducting nanowires fabricated via carbon-nanotube templating can be used to realize and study quasi-one-dimensional superconductors. However, measurement of the linear resistance of these nanowires have been inconclusive in determining the low-temperature behavior of phase-slip fluctuations, both quantal and thermal. Thus, we are motivated to study the nonlinear current-voltage characteristics in current-biased nanowires and the stochastic dynamics of superconductive-resistive switching, as a way of probing phase-slip events. In particular, we address the question: can a single phase-slip event occurring somewhere along the wire—during which the order-parameter fluctuates to zero—induce switching, via the local heating it causes? We explore this and related issues by constructing a stochastic model for the time evolution of the temperature in a nanowire whose ends are maintained at a fixed temperature. We derive the corresponding master equation as a tool for evaluating and analyzing the mean switching time at a given value of current (smaller than the depairing critical current). The model indicates that although, in general, several phase-slip events are necessary to induce switching via a thermal runaway, there is indeed a regime of temperatures and currents in which a single event is sufficient. We carry out a detailed comparison of the results of the model with experimental measurements of the distribution of switching currents, and provide an explanation for the rather counterintuitive broadening of the distribution width that is observed upon lowering the temperature. Moreover, we identify a regime in which the experiments are probing individual phase-slip events, and thus offer a way of unearthing and exploring the physics of nanoscale quantum tunneling of the one-dimensional collective quantum field associated with the superconducting order parameter. | ||||
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Notes | Recommended by Klapwijk | Approved | no | ||
Call Number | Serial | 923 | |||
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