Results for 'Quantum optics Congresses'

975 found
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  1.  98
    Quantum optical predictions inQ representation for Bell's type experiments.Miguel Ferrero & T. W. Marshall - 1991 - Foundations of Physics 21 (11):1315-1321.
    Using the Q representation, we study the disagreement between quantum optical formalism and local realism and we show that the phenomenon of enhancement, first revealed by the local realist analysis, could receive a simple explanation if we use this particular version of the quantum formalism. Nevertheless, some fundamental difficulties remain.
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  2.  36
    Critique of Quantum Optical Experimental Refutations of Bohr’s Principle of Complementarity, of the Wootters–Zurek Principle of Complementarity, and of the Particle–Wave Duality Relation.P. N. Kaloyerou - 2016 - Foundations of Physics 46 (2):138-175.
    I argue that quantum optical experiments that purport to refute Bohr’s principle of complementarity fail in their aim. Some of these experiments try to refute complementarity by refuting the so called particle–wave duality relations, which evolved from the Wootters–Zurek reformulation of BPC. I therefore consider it important for my forgoing arguments to first recall the essential tenets of BPC, and to clearly separate BPC from WZPC, which I will argue is a direct contradiction of BPC. This leads to a (...)
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  3. Quantum Optics and Fundamentals of Physics.D. -G. Welsch - 1995 - Foundations of Physics 25:1117-1117.
     
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  4.  97
    Neutron Matter Wave Quantum Optics.Helmut Rauch - 2012 - Foundations of Physics 42 (6):760-777.
    Neutron matter-wave optics provides the basis for new quantum experiments and a step towards applications of quantum phenomena. Most experiments have been performed with a perfect crystal neutron interferometer where widely separated coherent beams can be manipulated individually. Various geometric phases have been measured and their robustness against fluctuation effects has been proven, which may become a useful property for advanced quantum communication. Quantum contextuality for single particle systems shows that quantum correlations are to (...)
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  5.  32
    Wave–Particle Duality in Quantum Optics.Brigitte Falkenburg - 2010 - In Mauricio Suarez, Mauro Dorato & Miklos Redei (eds.), EPSA Philosophical Issues in the Sciences · Launch of the European Philosophy of Science Association. Springer. pp. 31--42.
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  6. Families of bose rays in quantum optics.N. Mukunda, E. C. G. Sudarshan & R. Simon - 1988 - Foundations of Physics 18 (3):277-306.
    Having known classical wave optics and wave mechanics, can we reverse Schrödinger's path and extend the concept of families of rays of light to provide a new exact rendering of quantum optics including the Bose nature of photons? This question is answered in the affirmative, and the implications of the Bose symmetry for certain nonlocal correlations of the many-ray distribution functions are worked out. The similarities and the differences between classical and quantum wave optics are (...)
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  7.  6
    Principles of Laser Spectroscopy and Quantum Optics.Paul R. Berman & Vladimir S. Malinovsky - 2010 - Princeton University Press.
    Principles of Laser Spectroscopy and Quantum Optics is an essential textbook for graduate students studying the interaction of optical fields with atoms. It also serves as an ideal reference text for researchers working in the fields of laser spectroscopy and quantum optics. The book provides a rigorous introduction to the prototypical problems of radiation fields interacting with two- and three-level atomic systems. It examines the interaction of radiation with both atomic vapors and condensed matter systems, the (...)
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  8.  27
    Book review: Quantum optics, by Marlan O. Scully and M. Suhail zubairy. [REVIEW]Berthold-Georg Englert - 1999 - Foundations of Physics 29 (5):829-831.
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  9. The following lectures have been scheduled: Electron Interferometry and Holography by A. Tonomura, Hitachi Ltd, Hatoyama, Japan; Recent Achievements in Neutron Interferometry by H. Rauch, Osterreichische Universitiiten, Vienna, Austria; Quantum Optics.H. Walther, M. P. I. Fiir Quantenoptik, M. Devoret & A. Aspect - 1994 - Foundations of Physics 24 (1).
     
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  10.  12
    Self-consistent radiation reaction in quantum optics—jaynes'influence and a new example in cavity qed.J. H. Eberly - 1993 - In E. T. Jaynes, Walter T. Grandy & Peter W. Milonni (eds.), Physics and Probability: Essays in Honor of Edwin T. Jaynes. Cambridge University Press. pp. 63.
  11.  3
    Quantum entanglement in electron optics: generation, characterization, and applications.Naresh Chandra - 2013 - New York: Springer. Edited by R. Ghosh.
    Introduction -- Quantum information: basic relevant concepts and applications -- Theory -- Part I. Atomic processes -- Coulombic entanglement: one-step single photoionization of atoms -- Coulombic entanglement: one-step double photoinonization of atoms -- Coulombic entanglement: two-step double photoinonization of atoms -- Fine-structure entanglement: bipartite states of flying particlees with rest mass different from zero -- Bipartite states and flying electronic qubits -- Part II. Molecular processes -- One-step double photoionization of molecules -- Two-step double photoionization of molecules -- Part (...)
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  12.  39
    Optically Engineered Quantum States in Ultrafast and Ultracold Systems.Kenji Ohmori - 2014 - Foundations of Physics 44 (8):813-818.
    This short account summarizes our recent achievements in ultrafast coherent control of isolated molecules in the gas phase, and its ongoing applications to an ensemble of ultracold Rydberg atoms to explore quantum many-body dynamics.
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  13.  10
    Optical non-linearities associated to hydrogenic impurities in InAs/GaAs self-assembled quantum dots under applied electric fields.M. Cristea, E. C. Niculescu & C. R. Truşcă - 2017 - Philosophical Magazine 97 (35):3343-3360.
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  14.  14
    Quantum noise in optical photon detectors.Antonio Vidiella-Barranco & Emilio Santos - 1995 - In M. Ferrero & A. van der Merwe (eds.), Fundamental Problems in Quantum Physics. pp. 73--357.
  15.  10
    Language, Quantum, Music: Selected Contributed Papers of the Tenth International Congress of Logic, Methodology, and Philosophy of Science, Florence, August 1995.Roberto Giuntini, Maria Luisa Dalla Chiara & Federico Laudisa - 1999 - Springer Verlag.
    Selected Contributed Papers of the Tenth International Congress of Logic, Methodology and Philosophy of Science, Florence, August 1995.
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  16.  39
    The problem of optical isomerism and the interpretation of quantum mechanics.Juan Camilo Martínez González - 2019 - Foundations of Chemistry 21 (1):97-107.
    When young Kant meditated upon the distinction between his right and left hands, he could not foresee that the problem of incongruent counterparts would revive in the twentieth century under a new form. In the early days of quantum chemistry, Friedrich Hund developed the so-called Hund paradox that arises from the supposed inability of quantum mechanics to account for the difference between enantiomers. In this paper, the paradox is expressed as a case of quantum measurement, stressing that (...)
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  17.  16
    Realization and characterization of quantum nondemolition measurements in optics.J. Ph Poizat, J. F. Roch & P. Grangier - 1995 - In M. Ferrero & A. van der Merwe (eds.), Fundamental Problems in Quantum Physics. pp. 73--237.
  18.  34
    The electronic and optical properties of a triexciton in CdSe/ZnS core/shell quantum dot nanocrystals.Abdurrahman Akturk, Hatice Tas, Koray Köksal & Mehmet Sahin - 2016 - Philosophical Magazine 96 (6):584-595.
  19.  16
    Progress in the optical studies of single InGaN/GaN quantum dots.A. F. Jarjour, R. A. Oliver & R. A. Taylor - 2007 - Philosophical Magazine 87 (13):2077-2093.
  20.  20
    Electronic and optical properties of asymmetric GaAs double quantum dots in intense laser fields.D. Bejan & E. C. Niculescu - 2016 - Philosophical Magazine 96 (11):1131-1149.
  21.  63
    A new application of the modal-Hamiltonian interpretation of quantum mechanics: The problem of optical isomerism.Sebastian Fortin, Olimpia Lombardi & Juan Camilo Martínez González - 2018 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 62:123-135.
    The modal-Hamiltonian interpretation belongs to the modal family of interpretations of quantum mechanics. By endowing the Hamiltonian with the role of selecting the subset of the definite-valued observables of the system, it accounts for ideal and non-ideal measurements, and also supplies a criterion to distinguish between reliable and non-reliable measurements in the non-ideal case. It can be reformulated in an explicitly invariant form, in terms of the Casimir operators of the Galilean group, and the compatibility of the MHI with (...)
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  22.  6
    Ultracold atoms in optical lattices: tunable quantum many-body systems.W. Hofstetter - 2006 - Philosophical Magazine 86 (13-14):1891-1906.
  23.  11
    Quantum Arrangements.Gregg Jaeger & Anton Zeilinger - 2021 - Cham, Switzerland: Springer Nature.
    This book presents a collection of novel contributions and reviews by renowned researchers in the foundations of quantum physics, quantum optics, and neutron physics. It is published in honor of Michael Horne, whose exceptionally clear and groundbreaking work in the foundations of quantum mechanics and interferometry, both of photons and of neutrons, has provided penetrating insight into the implications of modern physics for our understanding of the physical world. He is perhaps best known for the Clauser-Horne-Shimony-Holt (...)
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  24. From classical to quantum physics. Theoretical challenges by experimental physics : radiation and its interaction with matter / Shaul Katzir. Challenging the boundaries between classical and quantum physics : the case of optical dispersion / Marta Jordi Taltavull. Putting the quantum to work : Otto Sackur's pioneering exploits in the quantum theory of gases. [REVIEW]Massimiliano Badino & Bretislav Friedrich - 2013 - In Shaul Katzir, Christoph Lehner & Jürgen Renn (eds.), Traditions and transformations in the history of quantum physics: HQ-3, Third International Conference on the History of Quantum Physics, Berlin, June 28-July 2, 2010. Edition Open Access.
     
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  25. Quantum concepts in space and time.Roger Penrose & C. J. Isham (eds.) - 1986 - New York ;: Oxford University Press.
    Recent developments in quantum theory have focused attention on fundamental questions, in particular on whether it might be necessary to modify quantum mechanics to reconcile quantum gravity and general relativity. This book is based on a conference held in Oxford in the spring of 1984 to discuss quantum gravity. It brings together contributors who examine different aspects of the problem, including the experimental support for quantum mechanics, its strange and apparently paradoxical features, its underlying philosophy, (...)
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  26.  63
    Stochastic optics: A reaffirmation of the wave nature of light. [REVIEW]Trevor Marshall & Emilio Santos - 1988 - Foundations of Physics 18 (2):185-223.
    Quantum optics does not give a local explanation of the coincidence counts in spatially separated photodetectors. This is the case for a wide variety of phenomena, including the anticorrelated counting rates in the two channels of a beam splitter, the coincident counting rates of the two “photons” in an atomic cascade, and the “antibunching” observed in resonance fluorescence.We propose a local realist theory that explains all of these data in a consistent manner. The theory uses a completely classical (...)
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  27.  16
    Quantum theory and gravitation.A. R. Marlow (ed.) - 1980 - New York: Academic Press.
  28.  3
    Off-centre impurity-related nonlinear optical absorption, second and third harmonic generation in a two-dimensional quantum ring under magnetic field.E. C. Niculescu & D. Bejan - forthcoming - Philosophical Magazine:1-19.
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  29.  11
    Effect of a buffer layer between the shell and ligand on the optical properties of an exciton and biexciton in type-II quantum dot nanocrystals.Fatih Koç, Koray Koksal & Mehmet Sahin - forthcoming - Philosophical Magazine:1-11.
  30.  38
    Mathematical foundations of quantum theory.A. R. Marlow (ed.) - 1978 - New York: Academic Press.
    Mathematical Foundations of Quantum Theory is a collection of papers presented at the 1977 conference on the Mathematical Foundations of Quantum Theory, held in New Orleans. The contributors present their topics from a wide variety of backgrounds and specialization, but all shared a common interest in answering quantum issues. Organized into 20 chapters, this book's opening chapters establish a sound mathematical basis for quantum theory and a mode of observation in the double slit experiment. This book (...)
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  31.  7
    The Development of Elementary Quantum Theory.Herbert Capellmann - 2017 - Cham: Imprint: Springer.
    This book traces the evolution of the ideas that eventually resulted in the elementary quantum theory in 1925/26. Further, it discusses the essential differences between the fundamental equations of Quantum Theory derived by Born and Jordan, logically comprising Quantum Mechanics and Quantum Optics, and the traditional view of the development of Quantum Mechanics. Drawing on original publications and letters written by the main protagonists of that time, it shows that Einstein's contributions from 1905 to (...)
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  32. Quantum Deep Learning Triuniverse.Angus McCoss - 2016 - Journal of Quantum Information Science 6 (4).
    An original quantum foundations concept of a deep learning computational Universe is introduced. The fundamental information of the Universe (or Triuniverse)is postulated to evolve about itself in a Red, Green and Blue (RGB) tricoloured stable self-mutuality in three information processing loops. The colour is a non-optical information label. The information processing loops form a feedback-reinforced deep learning macrocycle with trefoil knot topology. Fundamental information processing is driven by ψ-Epistemic Drive, the Natural appetite for information selected for advantageous knowledge. From (...)
     
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  33.  21
    My Discussions of Quantum Foundations with John Stewart Bell.Marian Kupczynski - forthcoming - Foundations of Science:1-20.
    In 1976, I met John Bell several times in CERN and we talked about a possible violation of optical theorem, purity tests, EPR paradox, Bell’s inequalities and their violation. In this review, I resume our discussions, and explain how they were related to my earlier research. I also reproduce handwritten notes, which I gave to Bell during our first meeting and a handwritten letter he sent to me in 1982. We have never met again, but I have continued to discuss (...)
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  34.  52
    Large Scale Integrated Photonics for Twenty-First Century Information Technologies: A “Moore’s Law” for Optics.Raymond G. Beausoleil - 2014 - Foundations of Physics 44 (8):856-872.
    In this paper, we will review research done by the Large-Scale Integrated Photonics group at HP Laboratories, and in particular we will discuss applications of optical resonances in dielectric microstructures and nanostructures to future classical and quantum information technologies. Our goal is to scale photonic technologies over the next decade in much the same way as electronics over the past five, thereby establishing a Moore’s Law for optics.
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  35.  77
    Quantum causal explanation: or, why birds fly south.Sally Shrapnel - 2014 - European Journal for Philosophy of Science 4 (3):409-423.
    It is widely held that it is difficult, if not impossible, to apply causal theory to the domain of quantum mechanics. However, there are several recent scientific explanations that appeal crucially to quantum processes, and which are most naturally construed as causal explanations. They come from two relatively new fields: quantum biology and quantum technology. We focus on two examples, the explanation for the optical interferometer LIGO and the explanation for the avian magneto-compass. We analyse the (...)
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  36.  41
    Analogue Quantum Simulation: A New Instrument for Scientific Understanding.Dominik Hangleiter, Jacques Carolan & Karim Thebault - 2022 - Cham: Springer.
    This book presents fresh insights into analogue quantum simulation. It argues that these simulations are a new instrument of science. They require a bespoke philosophical analysis, sensitive to both the similarities to and the differences with conventional scientific practices such as analogical argument, experimentation, and classical simulation. -/- The analysis situates the various forms of analogue quantum simulation on the methodological map of modern science. In doing so, it clarifies the functions that analogue quantum simulation serves in (...)
  37.  34
    Can Quantum Gravity be Exposed in the Laboratory?Jacob D. Bekenstein - 2014 - Foundations of Physics 44 (5):452-462.
    I propose an experiment that may be performed, with present low temperature and cryogenic technology, to reveal Wheeler’s quantum foam. It involves coupling an optical photon’s momentum to the center of mass motion of a macroscopic transparent block with parameters such that the latter is displaced in space by approximately a Planck length. I argue that such displacement is sensitive to quantum foam and will react back on the photon’s probability of transiting the block. This might allow determination (...)
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  38.  35
    Emergent quantum mechanics : David Bohm Centennial perspectives.Jan Walleczek, Gerhard Grössing, Paavo Pylkkänen & Basil Hiley - 2019 - Entropy 21 (2).
    Emergent quantum mechanics (EmQM) explores the possibility of an ontology for quantum mechanics. The resurgence of interest in realist approaches to quantum mechanics challenges the standard textbook view, which represents an operationalist approach. The possibility of an ontological, i.e., realist, quantum mechanics was first introduced with the original de Broglie-Bohm theory, which has also been developed in another context as Bohmian mechanics. This Editorial introduces a Special Issue featuring contributions which were invited as part of the (...)
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  39.  10
    Fundamental problems in quantum theory: a conference held in honor of Professor John A. Wheeler.John Archibald Wheeler, Daniel M. Greenberger & Anton Zeilinger (eds.) - 1995 - New York: New York Academy of Sciences.
    Ed. Daniel Greenberger, 750pp May 1995 164.95.
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  40.  20
    Quantum Versus Classical Entanglement: Eliminating the Issue of Quantum Nonlocality.Andrei Khrennikov - 2020 - Foundations of Physics 50 (12):1762-1780.
    We analyze the interrelation of quantum and classical entanglement. The latter notion is widely used in classical optic simulation of some quantum-like features of light. We criticize the common interpretation that “quantum nonlocality” is the basic factor differing quantum and classical realizations of entanglement. Instead, we point to the breakthrough Grangier et al. experiment on coincidence detection which was done in 1986 and played the crucial role in rejection of classical field models in favor of (...) mechanics. Classical entanglement sources produce light beams with the coefficient of second order coherence \} \ge 1.\) This feature of classical entanglement is obscured by using intensities of signals in different channels, instead of counting clicks of photo-detectors. The interplay between intensity and clicks counting is not just a technicality. We elevate this issue to the high foundational level. (shrink)
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  41. Quantum Phase Shift Caused by Spatial Confinement.B. E. Allman, A. Cimmino, S. L. Griffin & A. G. Klein - 1999 - Foundations of Physics 29 (3):325-332.
    This paper presents the results of optical interferometry experiments in which the phase of photons in one arm of a Mach-Zehnder interferometer is modified by applying a transverse constriction. An equivalent quantum interferometry experiment using neutron de Broglie waves is discussed in which the observed phase shift is in the spirit of the force-free phase shift of the Aharonov-Bohm effects. In the optical experiments the experimental results are in excellent agreement with predictions.
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  42.  35
    Fermionic Linear Optics Revisited.David P. DiVincenzo & Barbara M. Terhal - 2005 - Foundations of Physics 35 (12):1967-1984.
    We provide an alternative view of the efficient classical simulatibility of fermionic linear optics in terms of Slater determinants. We investigate the generic effects of two-mode measurements on the Slater number of fermionic states. We argue that most such measurements are not capable (in conjunction with fermion linear optics) of an efficient exact implementation of universal quantum computation. Our arguments do not apply to the two-mode parity measurement, for which exact quantum computation becomes possible.
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  43.  8
    Testing a Quantum Inequality with a Meta-analysis of Data for Squeezed Light.G. Jordan Maclay & Eric W. Davis - 2019 - Foundations of Physics 49 (8):797-815.
    In quantum field theory, coherent states can be created that have negative energy density, meaning it is below that of empty space, the free quantum vacuum. If no restrictions existed regarding the concentration and permanence of negative energy regions, it might, for example, be possible to produce exotic phenomena such as Lorentzian traversable wormholes, warp drives, time machines, violations of the second law of thermodynamics, and naked singularities. Quantum Inequalities have been proposed that restrict the size and (...)
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  44. Quantum vacuum noise in physics and cosmology.Paul Davies - manuscript
    The concept of the vacuum in quantum field theory is a subtle one. Vacuum states have a rich and complex set of properties that produce distinctive, though usually exceedingly small, physical effects. Quantum vacuum noise is familiar in optical and electronic devices, but in this paper I wish to consider extending the discussion to systems in which gravitation, or large accelerations, are important. This leads to the prediction of vacuum friction: The quantum vacuum can act in a (...)
     
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  45.  8
    Quantum Hydrodynamics: Kirchhoff Equations.K. V. S. Shiv Chaitanya - 2019 - Foundations of Physics 49 (4):351-364.
    In this paper, we show that the Kirchhoff equations are derived from the Schrödinger equation by assuming the wave function to be a polynomial like solution. These Kirchhoff equations describe the evolution of n point vortices in hydrodynamics. In two dimensions, Kirchhoff equations are used to demonstrate the solution to single particle Laughlin wave function as complex Hermite polynomials. We also show that the equation for optical vortices, a two dimentional system, is derived from Kirchhoff equation by using paraxial wave (...)
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  46. The compatibility between quantum mechanics and local realist theories in atomic cascade experiments.M. Ferrero & T. W. Marshall - 1991 - Foundations of Physics 21 (4):403-415.
    We show that the divergence between the predictions of quantum optics and the local realist theory known as stochastic optics, for the extended type of photon-coincidence experiment described recently by de Caro, is of the same order of magnitude as for Aspect-type experiments. This means that, in such new experiments, as in those so far performed, counting statistics will have to be greatly improved before a discrimination between the two theories becomes possible.We also show that the outstanding (...)
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  47.  56
    Relativistic quantum mechanics of spin-0 and spin-1 bosons.Partha Ghose - 1996 - Foundations of Physics 26 (11):1441-1455.
    It is shown that below the threshold of pair creation, a consistent quantum mechanical interpretation of relativistic spin-0 and spin-1 particles (both massive and mussless) ispossible based an the Hamiltonian-Schrödinger form of the firstorder Kemmer equation together with a first-class constraint. The crucial element is the identification of a conserved four-vector current associated with the equation of motion, whose time component is proportional to the energy density which is constrainedto be positive definite for allsolutions. Consequently, the antiparticles must be (...)
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  48.  9
    Physics, mathematics, and all that quantum jazz.Shu Tanaka, Masamitsu Bando & Utkan Güngördü (eds.) - 2014 - New Jersey: World Scientific.
    My life as a quantum physicist / M. Nakahara -- A review on operator quantum error correction - Dedicated to Professor Mikio Nakahara on the occasion of his 60th birthday / C.-K. Li, Y.-T. Poon and N.-S. Sze -- Implementing measurement operators in linear optical and solid-state qubits / Y. Ota, S. Ashhab and F. Nori -- Fast and accurate simulation of quantum computing by multi-precision MPS: Recent development / A. Saitoh -- Entanglement properties of a (...) lattice-gas model on square and triangular ladders / S. Tanaka, R. Tamura and H. Katsura -- On signal amplification from weak-value amplification / Y. Shikano -- Topological protection of quantum information / K. Fujii -- Quantum annealing with antiferromagnetic fluctuations for mean-field models / Y. Seki and H. Nishimori -- A method to change phase transition nature - Toward annealing methods / R. Tamura and S. Tanaka -- Computational analysis of the first stage of the photosynthetic system, the light-dependent reaction, by quantum chemical simulation method / M. Tada-Umezaki -- Two-qubit gate operation on selected nearest neighboring qubits in a neutral atom quantum computer / E. Hosseini Lapasar... [et al.] -- A simple operator quantum error correction scheme avoiding fully correlated errors / C. Bagnasco, Y. Kondo and M. Nakahara -- Black hole predictability, classical and quantum / A. Ishibashi -- Classical field simulation of finite-temperature Bose gases / T. Sato -- Atomic quantum simulations of lattice gauge theory: Effect of gauge symmetry breaking / K. Kasamatsu, I. Ichinose and T. Matsui -- Recursive construction of noiseless subsystem for qudits / U. Gungordu... [et al.] -- Composite quantum gates for precise quantum control / M. Bando... [et al.] -- New formulation of statistical mechanics using thermal pure quantum states / S. Sugiura and A. Shimizu -- Thermodynamics in unitary time evolution / T. N. Ikeda -- Second law of thermodynamics with QC-mutual information / T. Sagawa. (shrink)
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  49.  27
    New techniques and ideas in quantum measurement theory.Daniel M. Greenberger (ed.) - 1986 - New York, N.Y.: New York Academy of Sciences.
  50.  16
    A Quantum Chemical Approach to Consciousness Based on Phase Conjugation.Glen Rein - 2016 - Cosmos and History 12 (2):250-258.
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