Search results for "kiinteän olomuodon fysiikka"

showing 6 items of 6 documents

Sub- to Super-Poissonian crossover of current noise in helical edge states coupled to a spin impurity in a magnetic field

2021

Edge states of two-dimensional topological insulators are helical and single-particle backscattering is prohibited by time-reversal symmetry. In this work, we show that an isotropic exchange coupling of helical edge states (HES) to a spin 1/2 impurity subjected to a magnetic field results in characteristic backscattering current noise (BCN) as a function of bias voltage and tilt angle between the direction of the magnetic field and the quantization axis of the HES. In particular, we find transitions from sub-Poissonian (antibunching) to super-Poissonian (bunching) behavior as a direct consequence of the helicity of the edge state electrons. We use the method of full counting statistics with…

Condensed Matter - Mesoscale and Nanoscale Physicsspin (kvanttimekaniikka)Mesoscale and Nanoscale Physics (cond-mat.mes-hall)kiinteän olomuodon fysiikkaFOS: Physical sciencesmagneettikentätCondensed Matter::Mesoscopic Systems and Quantum Hall Effectsähkönjohtavuus
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Rippling of two-dimensional materials by line defects

2020

Two-dimensional materials and their mechanical properties are known to be profoundly affected by rippling deformations. However, although ripples are fairly well understood, less is known about their origin and controlled modification. Here, motivated by recent reports of laser-controlled creation of line defects in graphene, we investigate how line defects could be used to control rippling in graphene and other two-dimensional materials. By sequential multi-scale coupling of density-functional tight-binding and continuum elasticity simulations, we quantify the amount of rippling when the number and the cumulative length of the line defects increase. Simulations show that elastic sheets wit…

Materials sciencemechanical deformationelastic modulus02 engineering and technology01 natural scienceslaw.inventionlaw0103 physical sciencesgrafeeniElasticity (economics)materiaalitiede010306 general physicsSofteningCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed matter physicsline defectsGraphenebending021001 nanoscience & nanotechnologykimmoisuusfysikaaliset ominaisuudetLine defectsNonlinear systemMultiscale couplingRipplingkiinteän olomuodon fysiikka0210 nano-technologyPhysical Review B
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Reply to : “Topological and trivial domain wall states in engineered atomic chains”

2022

publishedVersion Non peer reviewed

kiinteän olomuodon fysiikkaCondensed Matter Physicskvanttifysiikka114 Physical sciencesElectronic Optical and Magnetic Materials
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Effective medium theory for the low-temperature heat capacity of a metasolid plate

2023

Nanopatterning can be used to strongly control the thermal properties of solids, but theoretical understanding relies often on complex numerical simulations. Here, an analytical theory is derived for the low temperature heat capacity of a nanopatterned phononic crystal plate, focusing on the geometry of a square lattice of cylindrical holes in an isotropic matrix material. Its quasistatic elastic properties were studied using an anisotropic effective medium theory, that is, considering it as a homogenized metasolid. The effective elastic parameters can then be used as an input for an anisotropic plate theory, yielding analytical expressions for the dispersion relations of the three lowest p…

nanorakenteetkiinteän olomuodon fysiikkalämpökapasiteettimatemaattiset mallitmetamateriaalit
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Application of time-dependent many-body perturbation theory to excitation spectra of selected finite model systems

2016

In this thesis, an approximate method introduced to solve time-dependent many-body problems known as time-dependent many-body perturbation theory is studied. Many-body perturbation theory for interacting electrons and phonons is reviewed. In particular, the electron propagator G and an unconventional two-component phonon propagator, which satisfy coupled integral Dyson equations, are introduced. In practice, the associated integral kernels known as the electron Σ and phonon self-energies need to be approximated. The conserving approximations known as the Hartree (-Fock) and the first and second Born approximations, which respect the continuity equation between the electron density and curren…

numeeriset menetelmätmany-body problemsmany-body theoryspektroskopiaGreenin funktioGreen's functionmonen kappaleen teoriaelektronittime-dependent many-body perturbation theoryaikariippuva monihiukkashäiriöteoriaelectron-phonon interactionkiinteän olomuodon fysiikkakvanttimekaniikkaexcitation spectraapproksimointifononit
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Acoustic wave tunneling across a vacuum gap between two piezoelectric crystals with arbitrary symmetry and orientation

2022

It is not widely appreciated that an acoustic wave can “jump” or “tunnel” across a vacuum gap between two piezoelectric solids, nor has the general case been formulated or studied in detail. Here, we remedy that situation, by presenting a general formalism and approach to study such an acoustic tunneling effect between two arbitrarily oriented anisotropic piezoelectric semi-infinite crystals. The approach allows one to solve for the reflection and transmission coefficients of all the partial-wave modes, and is amenable to practical numerical or even analytical implementation, as we demonstrate by a few chosen examples. The formalism can be used in the future for quantitative studies of the …

värähtelytCondensed Matter - Mesoscale and Nanoscale PhysicsaaltoliikeMesoscale and Nanoscale Physics (cond-mat.mes-hall)kiinteän olomuodon fysiikkaFOS: Physical scienceskiteetfononit
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