Search results for "Mirror"

showing 10 items of 202 documents

Neutron Skin Effects in Mirror Energy Differences: The Case of Mg23−Na23

2018

Energy differences between analogue states in the T=1/2 Mg23-Na23 mirror nuclei have been measured along the rotational yrast bands. This allows us to search for effects arising from isospin-symmetry-breaking interactions (ISB) and/or shape changes. Data are interpreted in the shell model framework following the method successfully applied to nuclei in the f7/2 shell. It is shown that the introduction of a schematic ISB interaction of the same type of that used in the f7/2 shell is needed to reproduce the data. An alternative novel description, applied here for the first time, relies on the use of an effective interaction deduced from a realistic charge-dependent chiral nucleon-nucleon pote…

PhysicsProton010308 nuclear & particles physicsYrastNuclear TheoryShell (structure)General Physics and Astronomy01 natural sciences0103 physical sciencesOrbit (dynamics)NeutronHaloMirror nucleiAtomic physicsNuclear Experiment010306 general physicsEnergy (signal processing)Physical Review Letters
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Emergence of non-Markovianity in the emission process of an atom in a half-cavity

2014

We study quantum non-Markovianity in the early stage of the emission process of a two-level atom coupled to a semi-infinite waveguide, where the waveguide termination behaves as a perfect mirror. Specifically, we restrict to the analysis of the process for times shorter than twice the time delay t_d, where t_d is the duration of a round trip along the atom-mirror path. We show the emergence of a threshold in the parameters space separating the Markovian and non-Markovian regions.

PhysicsQuantum PhysicsProcess (computing)FOS: Physical sciencesAtom (order theory)Markov processopen quantum systemsParameter spacenon-Markovianity open quantum systems spontaneous emission waveguide QEDCondensed Matter Physicsnon-MarkovianityAtomic and Molecular Physics and Opticssymbols.namesakePerfect mirrorwaveguide QEDQuantum mechanicsPath (graph theory)symbolsWaveguide (acoustics)Quantum Physics (quant-ph)spontaneous emissionQuantumMathematical Physics
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Noncritically squeezed light via spontaneous rotational symmetry breaking.

2007

We theoretically address squeezed light generation through the spontaneous breaking of the rotational invariance occuring in a type I degenerate optical parametric oscillator (DOPO) pumped above threshold. We show that a DOPO with spherical mirrors, in which the signal and idler fields correspond to first order Laguerre-Gauss modes, produces a perfectly squeezed vacuum with the shape of a Hermite-Gauss mode, within the linearized theory. This occurs at any pumping level above threshold, hence the phenomenon is non-critical. Imperfections of the rotational symmetry, due e.g. to cavity anisotropy, are shown to have a small impact, hence the result is not singular.

PhysicsQuantum PhysicsSpontaneous symmetry breakingDegenerate energy levelsRotational symmetryFOS: Physical sciencesPhysics::OpticsGeneral Physics and AstronomyCurved mirrorExplicit symmetry breakingQuantum mechanicsOptical parametric oscillatorAtomic physicsQuantum Physics (quant-ph)AnisotropySqueezed coherent statePhysical review letters
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Topologically Protected Twist Edge States for a Resonant Mechanical Laser-Beam Scanner

2019

We design a one-dimensional chain of two different alternating three-dimensional elastic chiral unit cells. The chain’s topological band gap, a result of the alternation of unit cells combined with their chirality and an effective mirror symmetry, guarantees a protected edge state, corresponding to a localized twist mode with an eigenfrequency inside the one-dimensional band gap. A small axial modulation at the one end of the beam can excite this resonant twist mode at the other end of the beam, via evanescent modes in the gap. The topological robustness of the edge state allows us to add a micromirror to the other end of the beam, turning the arrangement into a resonant mechanical laser-be…

PhysicsScannerBand gapbusiness.industryAlternation (geometry)General Physics and Astronomy02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesOptics0103 physical sciencesEdge statesTwist010306 general physics0210 nano-technologyMirror symmetrybusinessChirality (chemistry)Laser beamsPhysical Review Applied
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Electrostatically operated micromirrors for a Hadamard transform spectrometer

2002

The paper presents the development of a linear micromirror array which can be used as a switchable entrance mask for a double-array Hadamard transform spectrometer. In addition to the detector array the double-array spectrometer has a linear multi-slit array realised by independently switchable micromirrors at the entrance side. Two different switch positions of the electrostatically operated mirrors allow the reflection of light into or away from the spectrometer. With this arrangement (mirror array, concave grating and array detector) and the use of the Hadamard transform principle it is possible to increase the signal-to-noise ratio and the resolution of the system compared to convention…

PhysicsSpectrometerPhysics::Instrumentation and Detectorsbusiness.industryResolution (electron density)DetectorMicromirror arrayPhysics::OpticsGratingOptical switchOpticsHadamard transformDetector arraybusiness1998 IEEE/LEOS Summer Topical Meeting. Digest. Broadband Optical Networks and Technologies: An Emerging Reality. Optical MEMS. Smart Pixels. Organic Optics and Optoelectronics (Cat. No.98TH8369)
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Logarithmic Enumerative Geometry and Mirror Symmetry

2020

PhysicsTheoretical physicsLogarithmGeneral MedicineMirror symmetryEnumerative geometryOberwolfach Reports
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Magnetic configuration effects on the Wendelstein 7-X stellarator

2018

The two leading concepts for confining high-temperature fusion plasmas are the tokamak and the stellarator. Tokamaks are rotationally symmetric and use a large plasma current to achieve confinement, whereas stellarators are non-axisymmetric and employ three-dimensionally shaped magnetic field coils to twist the field and confine the plasma. As a result, the magnetic field of a stellarator needs to be carefully designed to minimize the collisional transport arising from poorly confined particle orbits, which would otherwise cause excessive power losses at high plasma temperatures. In addition, this type of transport leads to the appearance of a net toroidal plasma current, the so-called boot…

PhysicsTokamakField (physics)General Physics and AstronomyPlasma7. Clean energy01 natural sciences010305 fluids & plasmasBootstrap currentComputational physicsMagnetic fieldlaw.inventionMagnetic mirrorWendelstein 7-X stellaratorPhysics and Astronomy (all)lawPhysics::Plasma Physics0103 physical sciencesWendelstein 7-X plasmasWendelstein 7-X010306 general physicsStellarator
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Carbon coatings for soft-x-ray reflectivity enhancement

2007

In X-ray astronomical telescopes, the focalization of the radiation is achieved by means of grazing incidence Wolter I (parabola + hyperbola) optics in total reflection regime. In general, high density materials (e.g. Au, Pt, Ir, W) are used as reflecting coatings, in order to increase as much as possible the cut-off angles and energies for total reflection. However these materials present an important reduction of the reflectivity between 0.2 and 5 keV, due to the photoabsorption, and this phenomenon is particularly enhanced in correspondence of the M absorption edges (between 2 and 3.5 keV). In general, this determines a strong decrease of the telescope effective area. To overcome the pro…

PhysicsTotal internal reflectionbusiness.industrychemistry.chemical_elementSynchrotronlaw.inventionTelescopeOptical coatingReflection (mathematics)OpticschemistryAbsorption edgelawX-ray astronomical mirrors carbon overcoatings enhancement of the X-ray reflectivityAbsorption (electromagnetic radiation)businessCarbon
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An Improved Double-Pulse Non-Normal Incidence Pumping Geometry for Transient Collisionally Excited Soft X-Ray Lasers

2009

An optimized pumping geometry for transient collisionally excited soft X-ray lasers is presented, similar to the geometry proposed by [1]. In contrast to usual approaches, where a nanosecond pre-pulse is assumed to provide the optimal plasma preparation and a picosecond pulse performs the final heating- and excitation process, two pulses of equal duration in the range around 10 picoseconds are applied. Both pulses are produced in the front end of the CPA pump laser. They are focused onto the target with the same spherical mirror under non-normal incidence geometry, optimized for efficient traveling wave excitation for the main-pulse. A first experiment was performed on Ni-like palladium (14…

Physicsbusiness.industryCurved mirrorGeometryLaser pumpingNanosecondLaserlaw.inventionOpticsRegenerative amplificationlawPicosecondExcited statebusinessExcitation
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Wavelength-flattened directional couplers for mirror-symmetric interferometers

2005

In the context of guided optics, we derive, analytically and geometrically, a rigorous general criterion to design wavelength insensitive interferometers with mirror symmetry, which are needed for wavelength multiplexing/demultiplexing. The criterion is applied to a practical case, resulting in an interferometer that works on a band wider than 70 nm.

Physicsbusiness.industryFOS: Physical sciencesPhysics::OpticsContext (language use)Optical directional couplersMultiplexingAtomic and Molecular Physics and OpticsWavelengthInterferometryOptical waveguide filtersOpticsOptical interferometryWavelength division multiplexingAstronomical interferometerPower dividers and directional couplersGeometric modelingbusinessMirror symmetryOptical planar waveguide componentsPhysics - OpticsOptics (physics.optics)
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