530 Physik
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- Physics (13)
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- Organische Solarzelle (12)
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- ++ (11)
- Dünne Schicht (11)
- Elektronischer Transport (11)
- Festkörperphysik (11)
- Physik (11)
- Squark (11)
- Supersymmetry (11)
- Zwei-Sechs-Halbleiter (11)
- molecular beam epitaxy (11)
- topological insulator (11)
- Optische Spektroskopie (10)
- Simulation (10)
- Spektroskopie (10)
- Rastertunnelmikroskopie (9)
- Starke Kopplung (9)
- Zinkselenid (9)
- ARPES (8)
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- Elektronenspin (8)
- Elektronenstruktur (8)
- Elementarteilchenphysik (8)
- Femtosekundenbereich (8)
- Fotovoltaik (8)
- Grenzfläche (8)
- Mass (8)
- Optoelektronik (8)
- Parton distributions (8)
- Röntgen-Photoelektronenspektroskopie (8)
- Semimagnetischer Halbleiter (8)
- Supraleitung (8)
- photoelectron spectroscopy (8)
- Bildgebendes Verfahren (7)
- Exziton (7)
- Exziton-Polariton (7)
- Hubbard-Modell (7)
- Laser (7)
- MBE (7)
- Magnetismus (7)
- Manganarsenide (7)
- Monte-Carlo (7)
- Neutrino (7)
- Oberflächenphysik (7)
- Organisches Molekül (7)
- Quanten-Hall-Effekt (7)
- Quantenwell (7)
- Raman-Spektroskopie (7)
- Rekombination (7)
- Röntgenspektroskopie (7)
- Spin (7)
- Spin-Bahn-Wechselwirkung (7)
- electronic properties and materials (7)
- magnetic resonance imaging (7)
- semiconductor (7)
- spintronics (7)
- Übergangsmetalloxide (7)
- Computersimulation (6)
- DFB-Laser (6)
- Elektronenkorrelation (6)
- Gluino Production (6)
- Hadron colliders (6)
- Halbleiteroberfläche (6)
- Higgs bosons (6)
- MRT (6)
- Magnetische Kernresonanz (6)
- Magnetowiderstand (6)
- Mikroresonator (6)
- Nanodraht (6)
- Perowskit (6)
- Pulsformung (6)
- Rastertunnelmikroskop (6)
- Spintronics (6)
- XPS (6)
- energy (6)
- organic semiconductors (6)
- quantum dots (6)
- semiconductor laser (6)
- superconductivity (6)
- Breaking (5)
- Cadmiumselenid (5)
- Dünnschichtsolarzelle (5)
- Energy (5)
- Fermionensystem (5)
- GaAs (5)
- Graphen (5)
- Halbleiterschicht (5)
- Herz (5)
- Hubbard model (5)
- Kernspintomographie (5)
- Kondo-Effekt (5)
- LEED (5)
- Ladungstransport (5)
- Lunge (5)
- MASS (5)
- Magnetische Resonanz (5)
- Magnetischer Halbleiter (5)
- Manganverbindungen (5)
- Molekül (5)
- Monte Carlo (5)
- Photoemission (5)
- Photolumineszenz (5)
- Photovoltaik (5)
- Rashba-Effekt (5)
- Röntgenbeugung (5)
- Semiconductor (5)
- Silber (5)
- Solarzelle (5)
- Supraleiter (5)
- Top quark (5)
- condensed matter physics (5)
- electronic structure (5)
- magnetism (5)
- microscopy (5)
- pulse shaping (5)
- quantum optics (5)
- recombination (5)
- spectroscopy (5)
- ATLAS <Teilchendetektor> (4)
- AdS-CFT-Korrespondenz (4)
- Adsorbat (4)
- Ag(111) (4)
- Aluminiumarsenid (4)
- Beyond Standard Model (4)
- Biophysik (4)
- Boson (4)
- Computertomografie (4)
- Diffusion (4)
- Diffusionsverfahren <Halbleitertechnologie> (4)
- Distributions (4)
- Dotierung (4)
- Einzelmolekülmikroskopie (4)
- Einzelphotonenemission (4)
- Elektronengas (4)
- Elektronentransport (4)
- Epitaxie (4)
- Feldeffekttransistor (4)
- Festkörperoberfläche (4)
- Festkörpertheorie (4)
- Fourier-Spektroskopie (4)
- Galliumarsenid-Bauelement (4)
- Galliumarsenidlaser (4)
- Graphene (4)
- Herstellung (4)
- Hierarchy (4)
- Hochtemperatursupraleiter (4)
- Hochtemperatursupraleitung (4)
- Kristallwachstum (4)
- Magnetoelektronik (4)
- NEXAFS (4)
- NLO Computations (4)
- NMR (4)
- NMR-Spektroskopie (4)
- Nahfeldoptik (4)
- Nanopartikel (4)
- Netzwerk (4)
- Nickelverbindungen (4)
- Niederdimensionaler Halbleiter (4)
- Oberfläche (4)
- Optik (4)
- PTCDA (4)
- Parallele Bildgebung (4)
- Perovskite (4)
- Perylendianhydrid (4)
- Photochemische Reaktion (4)
- Photostrom (4)
- Physikalische Eigenschaft (4)
- Quantendraht (4)
- RIXS (4)
- Rashba effect (4)
- Spin flip (4)
- Standardmodell <Elementarteilchenphysik> (4)
- Strahlungstransport (4)
- Theoretische Physik (4)
- Wide-gap-Halbleiter (4)
- XMCD (4)
- XRD (4)
- electron (4)
- n-Halbleiter (4)
- optical spectroscopy (4)
- organic solar cells (4)
- particle physics (4)
- resonant tunneling diode (4)
- semiconductors (4)
- spin injection (4)
- states (4)
- two-dimensional materials (4)
- Abstimmbarer Laser (3)
- AdS-CFT Correspondence (3)
- AdS/CFT correspondence (3)
- Adaptivregelung (3)
- AlGaAs (3)
- Astrophysik (3)
- Blazar (3)
- Bosons (3)
- CT (3)
- CdSe (3)
- CdTe (3)
- Chaos (3)
- Chaostheorie (3)
- Compressed Sensing (3)
- Coulomb-Blockade (3)
- Cu(111) (3)
- DFB laser (3)
- Dark Matter (3)
- Diindenoperylen (3)
- Dimension 2 (3)
- Dunkle Materie (3)
- Dynamik (3)
- Elektronenspektroskopie (3)
- Elektronenspinresonanz (3)
- Elektronische Eigenschaft (3)
- Epitaxy (3)
- Events (3)
- Ferromagnetic Semiconductors (3)
- Ferromagnetische Schicht (3)
- Flavourmischung (3)
- Frequenzvervielfachung (3)
- Gamma-Burst (3)
- Gauge-gravity correspondence (3)
- Hadron Colliders (3)
- Herzmuskel (3)
- Heteroepitaxie (3)
- Heterostruktur-Bauelement (3)
- Higgs (3)
- Indiumarsenid (3)
- Indiumphosphid (3)
- Kohärente Kontrolle (3)
- Kondo-Modell (3)
- Konfokale Mikroskopie (3)
- Kosmische Strahlung (3)
- Laserdiode (3)
- Linienbreite (3)
- Luttinger-Flüssigkeit (3)
- MSSM (3)
- Magnetic Anisotropy (3)
- Magnetische Eigenschaft (3)
- Mangan (3)
- Manganate (3)
- Manganselenide (3)
- Mangansilicide (3)
- Maus (3)
- Measuring Masses (3)
- Metall-Isolator-Phasenumwandlung (3)
- Metalloberfläche (3)
- Mikrokavität (3)
- Mikrooptik (3)
- Model (3)
- Models (3)
- Molecular Beam Epitaxy (3)
- Mott-Übergang (3)
- Nanoelektronik (3)
- Nanooptik (3)
- Niederdimensionales Elektronengas (3)
- Niederdimensionales System (3)
- Nonlinear Dynamics (3)
- Numerisches Verfahren (3)
- ODMR-Spektroskopie (3)
- Optical spectroscopy (3)
- Optische Eigenschaft (3)
- Organic Semiconductors (3)
- Pair Production (3)
- Parallel Imaging (3)
- Particle data analysis (3)
- Perfusion (3)
- Phasenumwandlung (3)
- Photoluminescence (3)
- Photolumineszenzspektroskopie (3)
- Photonische Kristalle (3)
- Phthalocyanin (3)
- Plasmon (3)
- Polymere (3)
- Proton-Proton Collisions (3)
- Quantenkaskadenlaser (3)
- Quantenkontrolle (3)
- Quantenspinsystem (3)
- Quantum Monte Carlo (3)
- Quantum dots (3)
- Quantum information (3)
- Rastertunnelspektroskopie (3)
- Regelung (3)
- Rekonstruktion (3)
- Relaxation (3)
- Renormierungsgruppe (3)
- Resonanz-Tunneldiode (3)
- Resonanz-Tunneleffekt (3)
- Röntgendiffraktometrie (3)
- Röntgenmikroskopie (3)
- Röntgenstrahlung (3)
- Schwere-Fermionen-System (3)
- Search (3)
- Selbstorganisation (3)
- Siliciumcarbid (3)
- Sol-Gel-Verfahren (3)
- Stoßwelle (3)
- Strain (3)
- Supersymmetric models (3)
- Symmetry (3)
- Synchronisierung (3)
- Synchronization (3)
- Topologie (3)
- Transistor (3)
- Transportprozess (3)
- Ultrakurzzeitspektroskopie (3)
- Weak (3)
- Wechselwirkung (3)
- Würzburg / Sonderforschungsbereich II-VI-Halbleiter (3)
- Zerfall (3)
- absorption (3)
- charge transfer (3)
- computed tomography (3)
- dSTORM (3)
- diffusion (3)
- dynamics (3)
- economic growth (3)
- excitons (3)
- graphene (3)
- imaging (3)
- infrared spectroscopy (3)
- insulator (3)
- magnetic properties and materials (3)
- magnetic resonance (3)
- mice (3)
- microcavity (3)
- mouse (3)
- nanoparticles (3)
- optoelectronics (3)
- organische Halbleiter (3)
- photoemission (3)
- plasmonics (3)
- quantum control (3)
- quantum physics (3)
- quantum well (3)
- quantum wells (3)
- reconstruction (3)
- scanning tunneling microscopy (3)
- spin polarization (3)
- standard model (3)
- strong coupling (3)
- supersymmetry (3)
- surface science (3)
- (Ga (2)
- (Ga,Mn)As (2)
- 3D-Bildgebung (2)
- AFM (2)
- AGN (2)
- Active Galactic Nuclei (2)
- Adaptive Optics (2)
- Adaptive Optik (2)
- Adsorption (2)
- Aerogel (2)
- Algorithm (2)
- Aminosäuren (2)
- Antimonide (2)
- Antimonverbindungen (2)
- Atomic and molecular interactions with photons (2)
- Ballistischer Transport (2)
- Bildgebung (2)
- Bismutverbindungen (2)
- Bose-Einstein-Kondensation (2)
- C60 (2)
- CAIPIRINHA (2)
- CP-Parität (2)
- CSI (2)
- Cadmiumsulfid (2)
- Cadmiumtellurid (2)
- Calciumphosphat (2)
- Calciumphosphate (2)
- CePt5 (2)
- Cerlegierung (2)
- Chaotisches System (2)
- Coherent control (2)
- Computertomographie (2)
- Conformal field theory (2)
- Constraints (2)
- Cross-section (2)
- CuPc (2)
- Cuprate (2)
- DMS (2)
- Deformation (2)
- Dreidimensionale Rekonstruktion (2)
- Durchblutung (2)
- Dynamisches System (2)
- EW (2)
- Edelmetall (2)
- Effektive Theorie (2)
- Einmodenlaser (2)
- Electroweak interaction (2)
- Elektron-Elektron-Streuung (2)
- Elektron-Phonon-Wechselwirkung (2)
- Elektronenflüssigkeit (2)
- Elektronenstrahllithographie (2)
- Elektronenzustand (2)
- Elementarteilchen (2)
- Energiespeicher (2)
- Entanglement (2)
- Epitaxieschicht (2)
- Excitons (2)
- Experimental physics (2)
- Extensions of gauge sector (2)
- FIR-Spektroskopie (2)
- FT-IR-Spektroskopie (2)
- Feldstärkemessung (2)
- Femtosekundenlaser (2)
- Fernsehmaske (2)
- Ferromagnete (2)
- Ferromagnetikum (2)
- Ferromagnetische Halbleiter (2)
- Ferromagnetismus (2)
- Flash-Speicher (2)
- Flavour <Elementarteilchen> (2)
- Fluor-19 (2)
- Fragmentation (2)
- Fullerene (2)
- Funktionswerkstoff (2)
- GaMnAs (2)
- Galliumantimonid (2)
- Galliumnitrid (2)
- Gammaastronomie (2)
- Gammastrahlung (2)
- Gasionisationsdetektor (2)
- Germanium (2)
- Gitterbaufehler (2)
- Glas (2)
- Gluino production (2)
- Gold (2)
- Gravitation (2)
- HEMT (2)
- HRXRD (2)
- Halbleiter-Supraleiter-Kontakt (2)
- Halbleitergrenzflächen (2)
- Halbleiterphysik (2)
- Halbmetall (2)
- Herzbildgebung (2)
- Herzfunktionsdiagnostik (2)
- Herzinfarkt (2)
- Heusler (2)
- Heuslersche Legierung (2)
- Higgs boson (2)
- Higgs-Teilchen (2)
- Hochauflösendes Verfahren (2)
- Hochfrequenz (2)
- Hochleistungslaser (2)
- Hypothetical gauge bosons (2)
- II-VI semiconductor (2)
- II-VI-Halbleiter (2)
- Imaging techniques (2)
- Impact (2)
- Impulslaser (2)
- InP (2)
- Indiumnitrid (2)
- Inelastische Röntgenstreuung (2)
- Information (2)
- Infrarot (2)
- Interbandkaskadenlaser (2)
- Isomerizierung (2)
- Jets (2)
- Josephson junctions (2)
- Kardiovaskuläres System (2)
- Keldysh formalism (2)
- Kernspinresonanz (2)
- Kohlenstoff (2)
- Kohlenwasserstoffe (2)
- Kohärenz (2)
- Kondensierte Materie (2)
- Korrelation (2)
- Kosmologie (2)
- Kraftmikroskopie (2)
- Kristallfeld (2)
- LEEM (2)
- Ladungstransfer (2)
- Large Hadron Collider (2)
- Lasertechnologie (2)
- Lepton (2)
- Licht-Materie-Wechselwirkung (2)
- Linearbeschleuniger (2)
- Lung (2)
- MR (2)
- Magnetic Resonance Imaging (2)
- Magnetische Anisotropie (2)
- Magnetische Wechselwirkung (2)
- Magnetit (2)
- Magnetoelektrischer Effekt (2)
- Magnetotransport (2)
- Magnetresonanz (2)
- Magnetresonanztomografie (2)
- Magnetresonanztomographie (2)
- Markov-Ketten-Monte-Carlo-Verfahren (2)
- Mehrschichtsystem (2)
- Memristor (2)
- Mikroskopie (2)
- Mikrostruktur (2)
- Mn)As (2)
- Modellbasierte Rekonstruktion (2)
- Molekularbewegung (2)
- Molekulardynamik (2)
- Monoschicht (2)
- Mott-Isolator (2)
- Multiferroikum (2)
- NMR-Mikroskopie (2)
- NTCDA (2)
- Nanometerbereich (2)
- Nanostructures (2)
- Nanostrukturiertes Material (2)
- Nanowire (2)
- Natrium (2)
- Nernst-Effekt (2)
- Networks (2)
- Neutralino (2)
- Neutrinooszillation (2)
- NiMnSb (2)
- Nichtlineare Spektroskopie (2)
- Nichtlineares System (2)
- Numerisches Modell (2)
- Oberflächenplasmon (2)
- Oberflächenplasmonresonanz (2)
- Oberflächenzustand (2)
- Optimierung (2)
- Ordnungs-Unordnungs-Umwandlung (2)
- Organischer Feldeffekttransistor (2)
- Pair production (2)
- Particle Physics (2)
- Phase Transition (2)
- Photoelectron Spectroscopy (2)
- Photonischer Kristall (2)
- Physik jenseits des Standardmodells (2)
- Physikunterricht (2)
- Plus plus (2)
- Polariton (2)
- Polariton Lasing (2)
- Program (2)
- Proton-Proton-Streuung (2)
- Pump-Probe-Technik (2)
- QCD (2)
- QMC (2)
- Quantenchromodynamik (2)
- Quantenelektrodynamik (2)
- Quantenfeldtheorie (2)
- Quanteninformation (2)
- Quantenkosmologie (2)
- Quantenoptik (2)
- Quantenpunkte (2)
- Quantenpunktlaser (2)
- Quantentrog (2)
- Quantum Hall effect (2)
- Quantum anomalous Hall effect (2)
- Quantum many-body systems (2)
- RHEED (2)
- RTD (2)
- Radiative-corrections (2)
- Raman (2)
- Raman spectroscopy (2)
- Rasterelektronenmikroskopie (2)
- Reduction (2)
- Relaxationszeit (2)
- Relaxometrie (2)
- Relaxometry (2)
- Resonanztunneldiode (2)
- Riesenmagnetowiderstand (2)
- Röntgenabsorption (2)
- Röntgenabsorptionsspektroskopie (2)
- Röntgenemission (2)
- Röntgenmikroskop (2)
- Röntgenstreuung (2)
- Röntgenstrukturanalyse (2)
- SPA-LEED (2)
- STM (2)
- Scanning Tunneling Spectroscopy (2)
- Scattering (2)
- Schwingungsphase (2)
- Seebeck-Effekt (2)
- Semiconductors (2)
- Single Molecule Localization Microscopy (2)
- Solarzellen (2)
- Sonnenwind (2)
- Spectromicroscopy (2)
- Spin-Gitter-Relaxation (2)
- Spin-Spin-Relaxation (2)
- Spindynamik (2)
- Spinell (2)
- Spininjektion (2)
- Spinkette (2)
- Spintronic (2)
- Steady-State Sequences (2)
- Steady-State-Sequenzen (2)
- Stochastische Resonanz (2)
- Störstellen (2)
- Superconductivity (2)
- Superisolierung (2)
- Supernova (2)
- Surface plasmons (2)
- Symmetrie (2)
- Symmetry-breaking (2)
- Teilchenbeschleunigung (2)
- Teilchenphysik (2)
- Thermoelektrizität (2)
- Thin Films (2)
- Titan-Saphir-Laser (2)
- Top-Quark (2)
- Topological Insulator (2)
- Topological insulators (2)
- Topologische Isolatoren (2)
- Transparent-leitendes Oxid (2)
- Transporteigenschaft (2)
- Transportspektroskopie (2)
- Tumor (2)
- UPS (2)
- UV-VIS-Spektroskopie (2)
- Ultrafast information processing (2)
- Ultrafast spectroscopy (2)
- Ultraviolett-Photoelektronenspektroskopie (2)
- Vektorboson (2)
- Verbindungshalbleiter (2)
- Verspannung (2)
- Vielteilchensystem (2)
- WZ (2)
- Wachstumsprozess (2)
- Weiche Röntgenstrahlung (2)
- Weißer Zwerg (2)
- Wellenleiter (2)
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- Wärmeisolierstoff (2)
- Wärmeleitfähigkeit (2)
- Wärmeleitung (2)
- Wärmeschutz (2)
- X-ray (2)
- X-ray microscopy (2)
- XES (2)
- Z Boson (2)
- Zeitrichtung (2)
- Zinkoxid (2)
- ZnSe (2)
- Zweidimensionale konforme Feldtheorie (2)
- Zwischenmolekulare Kraft (2)
- adaptive optimization (2)
- adaptive quantum control (2)
- adsorption (2)
- amino acids (2)
- anisotropy energy (2)
- atherosclerosis (2)
- balanced SSFP (2)
- ballistic transport (2)
- band structure (2)
- blazar (2)
- blazars (2)
- calcium phosphate (2)
- carbon nanotubes (2)
- computational physics (2)
- cosmic rays (2)
- decay (2)
- density functional theory (2)
- diffraction (2)
- edge states (2)
- electron beam lithography (2)
- emissions (2)
- entropy production (2)
- evolutionary algorithm (2)
- excitations (2)
- exciton (2)
- exciton-polariton (2)
- fermions (2)
- ferroelectricity (2)
- ferromagnetic semiconductors (2)
- ferromagnetism (2)
- functional renormalization group (2)
- gas (2)
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- half metal (2)
- heart (2)
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- magnetic susceptibility (2)
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- neutrino telescope (2)
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- non-Cartesian Imaging (2)
- nonlinear dynamics (2)
- nuclear magnetic resonance (2)
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- optics (2)
- optimization (2)
- organic light emitting diodes (2)
- organic molecule (2)
- organic photovoltaics (2)
- organic semiconductor (2)
- organic thin films (2)
- organische Photovoltaik (2)
- output elasticities (2)
- oxygen vacancies (2)
- perfusion (2)
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- photoluminescence spectroscopy (2)
- phthalocyanine (2)
- plasmons (2)
- pp Collisions (2)
- pp collisions (2)
- proton-proton collisions (2)
- quantification (2)
- quantum Monte Carlo (2)
- quantum dot laser (2)
- quantum spin Hall effect (2)
- quantum transport (2)
- radiation (2)
- resonant photoelectron spectroscopy (2)
- resonant scattering (2)
- search (2)
- semiconductor interfaces (2)
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- shadow mask (2)
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- single photon emission (2)
- sodium (2)
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- spin (2)
- spin transport (2)
- spin-orbit coupling (2)
- spontaneous symmetry breaking (2)
- strongly correlated materials (2)
- superinsulation (2)
- surface states (2)
- telecommunication spectral range (2)
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- thermopower (2)
- thin films (2)
- transition metal oxides (2)
- transition radiation (2)
- variability (2)
- verdünnt magnetische Halbleiter (2)
- vicinal surfaces (2)
- waveguides (2)
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ResearcherID
- D-1250-2010 (1)
We have investigated optical properties of hybrid two-dimensional-zero-dimensional (2D-0D) tunnel structures containing strongly elongated InAs/InP(001) quantum dots (called quantum dashes), emitting at 1.55 μm. These quantum dashes (QDashes) are separated by a 2.3 nm-width barrier from an InGaAs quantum well (QW), lattice matched to InP. We have tailored quantum-mechanical coupling between the states confined in QDashes and a QW by changing the QW thickness. By combining modulation spectroscopy and photoluminescence excitation, we have determined the energies of all relevant optical transitions in the system and proven the carrier transfer from the QW to the QDashes, which is the fundamental requirement for the tunnel injection scheme. A transformation between 0D and mixed-type 2D-0D character of an electron and a hole confinement in the ground state of the hybrid system have been probed by time-resolved photoluminescence that revealed considerable changes in PL decay time with the QW width changes. The experimental discoveries have been explained by band structure calculations in the framework of the eight-band k·p model showing that they are driven by delocalization of the lowest energy hole state. The hole delocalization process from the 0D QDash confinement is unfavorable for optical devices based on such tunnel injection structures.
The work proposes possible designs of active regions for a mode-locked interband cascade laser emitting in the mid infrared. For that purpose we investigated the electronic structure properties of respectively modified GaSb-based type II W-shaped quantum wells, including the effect of external bias in order to simultaneously fulfil the requirements for both the absorber as well as the gain sections of a device. The results show that introducing multiple InAs layers in type II InAs/GaInSb quantum wells or introducing a tensely-strained GaAsSb layer into “W-shaped” type II QWs offers significant difference in optical transitions’ oscillator strengths (characteristic lifetimes) of the two oppositely polarized parts of such a laser, being promising for utilization in mode-locked devices.
Die Dissertation beschäftigt sich mit der Analyse von oxidischen Nanostrukturen. Die Grundlage der Bauelemente stellt dabei die LaAlO3/SrTiO3-Heterostruktur dar. Hierbei entsteht an der Grenzfläche beider Übergangsmetalloxide ein quasi zweidimensionales Elektronengas, welches wiederum eine Fülle von beachtlichen Eigenschaften und Charakteristika zeigt. Mithilfe lithographischer Verfahren wurden zwei unterschiedliche Bauelemente verwirklicht. Dabei handelt es sich einerseits um einen planaren Nanodraht mit lateralen Gates, welcher auf der Probenoberfläche prozessiert wurde und eine bemerkenswerte Trialität aufweist. Dieses Bauelement kann unter anderem als ein herkömmlicher Feldeffekttransistor agieren, wobei der Ladungstransport durch die lateral angelegte Spannung manipuliert wird. Zusätzlich konnten auch Speichereigenschaften beobachtet werden, sodass das gesamte Bauelement als ein sogenannter Memristor fungieren kann. In diesem Fall hängt der Ladungstransport von der Elektronenakkumulation auf den lateralen potentialfreien Gates ab. Die Memristanz des Nanodrahts lässt sich unter anderem durch Lichtleistungen im Nanowattbereich und mithilfe von kurzen Spannungspulsen verändern. Darüber hinaus kann die Elektronenakkumulation auch in Form einer memkapazitiven Charakteristik beobachtet werden. Neben dem Nanodraht wurde auch eine Kreuzstruktur, die eine ergänzende ferromagnetischen Elektrode beinhaltet, realisiert. Mit diesem neuartigen Bauteil wird die Umwandlung zwischen Spin- und Ladungsströmen innerhalb der nanoskaligen Struktur untersucht. Hierbei wird die starke Spin-Bahn-Kopplung im quasi zweidimensionalen Elektronengas ausgenutzt.
The ANTARES neutrino telescope has an energy threshold of a few tens of GeV. This allows to study the phenomenon of atmospheric muon neutrino disappearance due to neutrino oscillations. In a similar way, constraints on the 3+1 neutrino model, which foresees the existence of one sterile neutrino, can be inferred. Using data collected by the ANTARES neutrino telescope from 2007 to 2016, a new measurement of m 2 and (23) has been performed which is consistent with world best-fit values and constraints on the 3+1 neutrino model have been derived.
We consider the process of muon-electron elastic scattering, which has been proposed as an ideal framework to measure the running of the electromagnetic coupling constant at space-like momenta and determine the leading-order hadronic contribution to the muon g-2 (MUonE experiment). We compute the next-to-leading (NLO) contributions due to QED and purely weak corrections and implement them into a fully differential Monte Carlo event generator, which is available for first experimental studies. We show representative phenomenological results of interest for the MUonE experiment and examine in detail the impact of the various sources of radiative corrections under different selection criteria, in order to study the dependence of the NLO contributions on the applied cuts. The study represents the first step towards the realisation of a high-precision Monte Carlo code necessary for data analysis.
KM3NeT will be a network of deep-sea neutrino telescopes in the Mediterranean Sea. The KM3NeT/ARCA detector, to be installed at the Capo Passero site (Italy), is optimised for the detection of high-energy neutrinos of cosmic origin. Thanks to its geographical location on the Northern hemisphere, KM3NeT/ARCA can observe upgoing neutrinos from most of the Galactic Plane, including the Galactic Centre. Given its effective area and excellent pointing resolution, KM3NeT/ARCA will measure or significantly constrain the neutrino flux from potential astrophysical neutrino sources. At the same time, it will test flux predictions based on gamma-ray measurements and the assumption that the gamma-ray flux is of hadronic origin. Assuming this scenario, discovery potentials and sensitivities for a selected list of Galactic sources and to generic point sources with an E-2 spectrum are presented. These spectra are assumed to be time independent. The results indicate that an observation with 3 sigma significance is possible in about six years of operation for the most intense sources, such as Supernovae Remnants RX J1713.7-3946 and Vela Jr. If no signal will be found during this time, the fraction of the gamma-ray flux coming from hadronic processes can be constrained to be below 50% for these two objects. (C) 2019 The Authors. Published by Elsevier B.V.
The Hamamatsu R12199-023-inch photomultiplier tube is the photodetector chosen for the first phase of the KM3NeT neutrino telescope. About 7000 photomultipliers have been characterised for dark count rate, timing spread and spurious pulses. The quantum efficiency, the gain and the peak-to-valley ratio have also been measured for a sub-sample in order to determine parameter values needed as input to numerical simulations of the detector.
We consider the computation of volumes contained in a spatial slice of AdS(3) in terms of observables in a dual CFT. Our main tool is kinematic space, defined either from the bulk perspective as the space of oriented bulk geodesics, or from the CFT perspective as the space of entangling intervals. We give an explicit formula for the volume of a general region in a spatial slice of AdS(3) as an integral over kinematic space. For the region lying below a geodesic, we show how to write this volume purely in terms of entangling entropies in the dual CFT. This expression is perhaps most interesting in light of the complexity = volume proposal, which posits that complexity of holographic quantum states is computed by bulk volumes. An extension of this idea proposes that the holographic subregion complexity of an interval, defined as the volume under its Ryu-Takayanagi surface, is a measure of the complexity of the corresponding reduced density matrix. If this is true, our results give an explicit relationship between entanglement and subregion complexity in CFT, at least in the vacuum. We further extend many of our results to conical defect and BTZ black hole geometries.
The modular Hamiltonian of reduced states, given essentially by the logarithm of the reduced density matrix, plays an important role within the AdS/CFT correspondence in view of its relation to quantum information. In particular, it is an essential ingredient for quantum information measures of distances between states, such as the relative entropy and the Fisher information metric. However, the modular Hamiltonian is known explicitly only for a few examples. For a family of states rho(lambda) that is parametrized by a scalar lambda, the first order contribution in (lambda) over tilde = lambda-lambda(0) of the modular Hamiltonian to the relative entropy between rho(lambda) and a reference state rho(lambda 0) is completely determined by the entanglement entropy, via the first law of entanglement. For several examples, e.g. for ball-shaped regions in the ground state of CFTs, higher order contributions are known to vanish. In these cases the modular Hamiltonian contributes to the Fisher information metric in a trivial way. We investigate under which conditions the modular Hamiltonian provides a non-trivial contribution to the Fisher information metric, i.e. when the contribution of the modular Hamiltonian to the relative entropy is of higher order in (lambda) over tilde. We consider one-parameter families of reduced states on two entangling regions that form an entanglement plateau, i.e. the entanglement entropies of the two regions saturate the Araki-Lieb inequality. We show that in general, at least one of the relative entropies of the two entangling regions is expected to involve (lambda) over tilde contributions of higher order from the modular Hamiltonian. Furthermore, we consider the implications of this observation for prominent AdS/CFT examples that form entanglement plateaux in the large N limit.
We develop a joint formalism and numerical framework for analyzing the superconducting instability of metals from a weak coupling perspective. This encompasses the Kohn–Luttinger formulation of weak coupling renormalization group for superconductivity as well as the random phase approximation imposed on the diagrammatic expansion of the two-particle Green’s function. The central quantity to resolve is the effective interaction in the Cooper channel, for which we develop an optimized numerical framework. Our code is capable of treating generic multi-orbital models in two as well as three spatial dimensions and, in particular, arbitrary avenues of spin-orbit coupling.