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Microwave photonics with superconducting quantum circuits

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TLDR
In the past 20 years, impressive progress has been made both experimentally and theoretically in superconducting quantum circuits, which provide a platform for manipulating microwave photons as mentioned in this paper, and many higher-order effects, unusual and less familiar in traditional cavity quantum electrodynamics with natural atoms, have been experimentally observed.
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This article is published in Physics Reports.The article was published on 2017-11-30 and is currently open access. It has received 909 citations till now. The article focuses on the topics: Cavity quantum electrodynamics & Quantum optics.

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Effective description of cooling and thermal shifts in quantum systems coupled to bosonic modes

TL;DR: Recently, an effective Lindblad master equation for quantum systems whose dynamics are coupled to dissipative bosonic modes has been introduced as mentioned in this paper , which can effectively describe the dynamics of the quantum systems.
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Quantum dissipative adaptation.

TL;DR: In this article, the authors extend the dissipative adaptation phenomenon to the quantum realm and employ a fullyquantized exactly solvable model, where the source of work on a three-level system is a single-photon pulse added to a zero-temperature infinite environment, a scenario that cannot be treated by the classical framework.
Patent

Coupling surface acoustic wave resonators to a Josephson ring modulator

TL;DR: In this paper, a superconducting device that mixes surface acoustic waves and techniques for fabricating the same are provided, which can comprise a first surface acoustic wave resonator comprising a first low-loss piezo-electric dielectric substrate.

Resonance Fluorescence from a two-level artificial atom strongly coupled to a single-mode cavity

TL;DR: In this article , the authors demonstrate the resonance fluorescence of a two-level artificial atom strongly coupled to a single-mode cavity field and find that the central peak is determined by the atom spontaneous emission to the open space and the widths of side peaks are largely determined by coherent interaction between the atom and the cavity.
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Colloquium: Topological insulators

TL;DR: In this paper, the theoretical foundation for topological insulators and superconductors is reviewed and recent experiments are described in which the signatures of topologically insulators have been observed.
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Topological insulators and superconductors

TL;DR: Topological superconductors are new states of quantum matter which cannot be adiabatically connected to conventional insulators and semiconductors and are characterized by a full insulating gap in the bulk and gapless edge or surface states which are protected by time reversal symmetry.
Book

Classical Mechanics

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Effects of Configuration Interaction on Intensities and Phase Shifts

TL;DR: In this paper, a theoretical analysis of the shape of the 2s2p^{1}P resonance of He observed in the inelastic scattering of electrons is presented. But the analysis is restricted to the case of one discrete level with two or more continua and of a set of discrete levels with one continuum.
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Simulating physics with computers

TL;DR: In this paper, the authors describe the possibility of simulating physics in the classical approximation, a thing which is usually described by local differential equations, and the possibility that there is to be an exact simulation, that the computer will do exactly the same as nature.
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