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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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Notes | Approved | no | |||
Call Number | RPLAB @ gujma @ | Serial | 802 | ||
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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 | 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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Notes | Approved | no | |||
Call Number | RPLAB @ gujma @ | Serial | 800 | ||
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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 | Dauler, Eric; Kerman, Andrew; Robinson, Bryan; Yang, Joel; Voronov, Boris; Goltsman, Gregory; Hamilton, Scott; Berggren, Karl | ||||
Title | Photon-number-resolution with sub-30-ps timing using multi-element superconducting nanowire single photon detectors | Type | Journal Article | ||
Year | 2009 | Publication | J. Modern Opt. | Abbreviated Journal | J. Modern Opt. |
Volume | 56 | Issue | 2 | Pages | 364-373 |
Keywords | PNR SSPD; SNSPD; photon-number-resolution; superconducting nanowire single photon detector; timing jitter; system detection efficiency | ||||
Abstract | A photon-number-resolving detector based on a four-element superconducting nanowire single photon detector is demonstrated to have sub-30-ps resolution in measuring the arrival time of individual photons. This detector can be used to characterize the photon statistics of non-pulsed light sources and to mitigate dead-time effects in high-speed photon counting applications. Furthermore, a 25% system detection efficiency at 1550 nm was demonstrated, making the detector useful for both low-flux source characterization and high-speed photon-counting and quantum communication applications. The design, fabrication and testing of this detector are described, and a comparison between the measured and theoretical performance is presented. | ||||
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Call Number | RPLAB @ gujma @ | Serial | 700 | ||
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Author | Khosropanah P.; Baryshev A.; Zhang W.; Jellema W.; Hovenier J.N.; Gao G.R.; Klapwijk T.M; Paveliev D.G.; Williams B.S.; Kumar S.; Hu Q.; Reno J.L.; Klein B.; Hesler J.L. | ||||
Title | Phase-locking of a 2.7-THz quantum cascade laser to a microwave reference | Type | Journal Article | ||
Year | 2009 | Publication | Optics Letters | Abbreviated Journal | |
Volume | 34 | Issue | Pages | 2958-2960 | |
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Abstract | We demonstrate the phase locking of a 2.7 THz metal–metal waveguide quantum cascade laser (QCL) to an external microwave signal. The reference is the 15th harmonic, generated by a semiconductor superlattice nonlinear device, of a signal at 182 GHz, which itself is generated by a multiplier chain (X12) from a microwave synthesizer at ~ 15 GHz. Both laser and reference radiations are coupled into a bolometer mixer, resulting in a beat signal, which is fed into a phase-lock loop. The spectral analysis of the beat signal con-firms that the QCL is phase locked. This result opens the possibility to extend heterodyne interferometers into the far-infrared range. |
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Notes | Approved | no | |||
Call Number | RPLAB @ atomics90 @ | Serial | 966 | ||
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Author | Rabanus, D.; Graf, U. U.; Philipp, M.; Ricken, O.; Stutzki, J.; Vowinkel, B.; Wiedner, M. C.; Walther, C.; Fischer, M.; Faist, J. | ||||
Title | Phase locking of a 1.5 terahertz quantum cascade laser and use as a local oscillator in a heterodyne HEB receiver | Type | Journal Article | ||
Year | 2009 | Publication | Optics Express | Abbreviated Journal | |
Volume | 17 | Issue | 3 | Pages | 1159-1168 |
Keywords | QCL heterodyne, 300 uW at 1.5 THz, HEB mixer | ||||
Abstract | We demonstrate for the first time the closure of an electronic phase lock loop for a continuous–wave quantum cascade laser (QCL) at 1.5 THz. The QCL is operated in a closed cycle cryo cooler. We achieved a frequency stability of better than 100 Hz, limited by the resolution bandwidth of the spectrum analyser. The PLL electronics make use of the intermediate frequency (IF) obtained from a hot electron bolometer (HEB) which is downconverted to a PLL IF of 125 MHz. The coarse selection of the longitudinal mode and the fine tuning is achieved via the bias voltage of the QCL. Within a QCL cavity mode, the free-running QCL shows frequency fluctuations of about 5 MHz, which the PLL circuit is able to control via the Stark–shift of the QCL gain material. Temperature dependent tuning is shown to be nonlinear, and of the order of -16 MHz/K. Additionally we have used the QCL as local oscillator (LO) to pump an HEB and perform, again for the first time at 1.5 THz, a heterodyne experiment, and obtain a receiver noise temperature of 1741 K. | ||||
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Notes | Approved | no | |||
Call Number | Serial | 628 | |||
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Author | Zhizhon, Yan; Majedi, Hamed A. | ||||
Title | Optoelectronic mixing in the NbN superconducting nanowire single photon detectors | Type | Conference Article | ||
Year | 2009 | Publication | Proc. SPIE | Abbreviated Journal | Proc. SPIE |
Volume | 3786 | Issue | Pages | 9 | |
Keywords | Optoelectronic devices, microwave superconductivity, nonlinearity, single photon detector, superconductivity, nanowire, optical mixing, microwave mixers, amplitude modulation, intensity modulation. | ||||
Abstract | In this paper, we present our experimental results on the electrically pumped optoelectronic mixing effect exhibited in a niobium nitride (NbN) superconducting nanowire. The experimental setup in order to test the mixer has been reported in detail. This superconductive nanowire optoelectronic mixer demonstrates photodetection and mixing in an integrated manner. We have explored both effects under a great variety of external conditions, such as temperature and bias current, in order to seek potential ways toward quantum optoelectronic detection and mixing by such nanowire device. | ||||
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Call Number | RPLAB @ gujma @ | Serial | 651 | ||
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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 | Kern, Pierre; Le Coärer, Etienne; Benech, Pierre | ||||
Title | On-chip spectro-detection for fully integrated coherent beam combiners | Type | Journal Article | ||
Year | 2009 | Publication | Optics Express | Abbreviated Journal | Opt.Express |
Volume | 17 | Issue | 3 | Pages | 1976-1987 |
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Abstract | This paper presents how photonics associated with new arising detection technologies is able to provide fully integrated instrument for coherent beam combination applied to astrophysical interferometry. The feasibility and operation of on-chip coherent beam combiners has been already demonstrated using various interferometric combination schemes. More recently we proposed a new detection principle aimed at directly sampling and extracting the spectral information of an input signal together with its flux level measurement. The so-called SWIFTS demonstrated concept that stands for Stationary-Wave Integrated Fourier Transform Spectrometer, provides full spectral and spatial information recorded simultaneously thanks to a motionless detecting device. Due to some newly available detection principles considered for the implementation of the SWIFTS concept, some technologies can even provide photo-counting operation that brought a significant extension of the interferometry domain of investigation in astrophysics. The proposed concept is applicable to most of the interferometric instrumental modes including fringe tracking, fast and sensitive detection, Fourier spectral reconstruction and also to manage a large number of incoming beams. The paper presents three practical implementations, two dealing with pair-wise integrated optics beam combinations and the third one with an all-in-one 8 beam combination. In all cases the principles turned into a pair wise baseline coding after proper data processing. | ||||
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Call Number | RPLAB @ gujma @ | Serial | 650 | ||
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