TY - JOUR A1 - Rudno-Rudziński, W. A1 - Syperek, M. A1 - Andrezejewski, J. A1 - Maryński, A. A1 - Misiewicz, J. A1 - Somers, A. A1 - Höfling, S. A1 - Reithmaier, J. P. A1 - Sęk, G. T1 - Carrier delocalization in InAs/InGaAlAs/InP quantum-dash-based tunnel injection system for 1.55 μm emission JF - AIP Advances N2 - 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. KW - physics KW - surface collisions KW - electronic coupling KW - transition radiation KW - time-resolved photoluminescence KW - photoluminescence excitation KW - modulation spectroscopy KW - quantum dots KW - quantum wells KW - delocalization Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-181787 VL - 7 IS - 1 ER - TY - JOUR A1 - Ryczko, K. A1 - Misiewicz, J. A1 - Hofling, S. A1 - Kamp, M. A1 - Sęk, G. T1 - Optimizing the active region of interband cascade lasers for passive mode-locking JF - AIP Advances N2 - 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. KW - physics KW - electrostatics KW - transition radiation KW - oscillator strengths KW - laser spectroscopy KW - optical spectroscopy KW - atomic and molecular spectroscopy, KW - frequency combs KW - quantum wells KW - laser physics Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-181790 VL - 7 IS - 1 ER - TY - JOUR T1 - Characterisation of the Hamamatsu photomultipliers for the KM3NeT Neutrino Telescope JF - Journal of Instrumentation N2 - 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. KW - Cherenkov detectors KW - Large detector systems for particle and astroparticle physics KW - Neutrino detectors KW - Photon detectors for UV, visible and IR photons (vacuum) KW - Prototype Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-227744 VL - 13 ER - TY - THES A1 - Bayer, Florian T1 - Investigating electromagnetic properties of topological surface states in mercury telluride T1 - Untersuchung elektromagnetischer Eigenschaften topologischer Oberflächenzustände in Quecksilber-Tellurid N2 - This doctoral thesis investigates magneto-optical properties of mercury telluride layers grown tensile strained on cadmium telluride substrates. Here, layer thicknesses start above the usual quantum well thickness of about 20 nm and have a upper boundary around 100 nm due to lattice relaxation effects. This kind of layer system has been attributed to the material class of three-dimensional topological insulators in numerous publications. This class stands out due to intrinsic boundary states which cross the energetic band gap of the layer's bulk. In order to investigate the band structure properties in a narrow region around the Fermi edge, including possible boundary states, the method of highly precise time-domain Terahertz polarimetry is used. In the beginning, the state of the art of Teraherz technology at the start of this project is discussed, moving on to a detailed description and characterization of the self-built measurement setup. Typical standard deviation of a polarization rotation or ellipticity measurement are on the order of 10 to 100 millidegrees, according to the transmission strength through investigated samples. A range of polarization spectra, depending on external magnetic fields up to 10 Tesla, can be extracted from the time-domain signal via Fourier transformation. The identification of the actual band structure is done by modeling possible band structures by means of the envelope function approximation within the framework of the k·p method. First the bands are calculated based on well-established model parameters and from them the possible optical transitions and expected ellipticity spectra, all depending on external magnetic fields and the layer's charge carrier concentration. By comparing expected with measured spectra, the validity of k·p models with varying depths of detail is analyzed throughout this thesis. The rich information encoded in the ellipitcity spectra delivers key information for the attribution of single optical transitions, which are not part of pure absorption spectroscopy. For example, the sign of the ellipticity signals is linked to the mix of Landau levels which contribute to an optical transition, which shows direct evidence for bulk inversion asymmetry effects in the measured spectra. Throughout the thesis, the results are compared repeatedly with existing publications on the topic. It is shown that the models used there are often insufficient or, in worst case, plainly incorrect. Wherever meaningful and possible without greater detours, the differences to the conclusions that can be drawn from the k·p model are discussed. The analysis ends with a detailed look on remaining differences between model and measurement. It contains the quality of model parameters as well as different approaches to integrate electrostatic potentials that exist in the structures into the model. An outlook on possible future developments of the mercury cadmium telluride layer systems, as well as the application of the methods shown here onto further research questions concludes the thesis. N2 - Diese Doktorarbeit untersucht die magneto-optischen Eigenschaften zugverspannter Quecksilbertelluridschichten auf Cadmiumtelluridsubstraten. Die Schichtdicken sind hierbei dicker als die gewöhnlicher Quantentrogsysteme bis etwa 20 nm und nach oben hin beschränkt durch Gitterrelaxationeffekte ab ca. 100 nm. Dieses Schichtsystem wurde in zahlreichen Publikationen der Materialklasse dreidimensionaler Topologischer Isolatoren zugeordnet, welche sich durch intrinsische Grenzflächenzustände auszeichnet, die energetisch in der Bandlücke des Schichtinneren liegen. Um die Eigenschaften der Bandstruktur im direkten Umfeld der Fermi-Kante, inklusive etwaiger Grenzflächenzustände, untersuchen zu können, kommt die Methode der hochpräzisen Zeitdomänen-Terahertz-Polarimetrie zum Einsatz. Der Stand der dazu nötigen Technik wird zu Beginn der Doktorarbeit einleitend diskutiert und der daraus entstandene Messaufbau wird im Detail beschrieben, sowie dessen Charakterisierung erläutert. Die typischerweise erzielbare Standardabweichung einer Messung liegt, je nach Transmissionsgrad der untersuchten Probenstrukturen, im Bereich weniger 10 bis 100 Tausendstel Grad für die Polarisationgrößen Rotation und Elliptizität. In Abhängigkeit externer Magnetfelder bis hin zu 10 Telsa ergeben sich so mittels Fourier-Transformation des Zeitsignals verschiedene Polarisationspektren. Der Rückschluss auf die zugrunde liegende Bandstruktur gelingt durch die Modellierung möglicher Bandstrukturen mittels der Einhüllenden-Funktionen-Näherung der k·p-Methode. Hierzu wird zunächst die Bandstruktur nach den gewählten Modellparametern berechnet und aus dieser wiederum die zu erwartenden Elliptizitätsspektren in Abhängigkeit des externen Magnetfeldes und der Ladungsträgerkonzentration berechnet. Aus dem Vergleich berechneter und tatsächlich gemessener Spektren wird im Laufe der Arbeit die Validität verschieden detaillierter k·p-Modelle analysiert. Die reichhaltigen Informationen aus der Elliptizitätsmesung liefern bei der Zuordnung einzelner optischer Übergänge entscheidende Hinweise, die in reiner Absorptionsspektroskopie nicht enthalten sind. So ist das Vorzeichen der Elliptizität verknüpft mit der Zusammensetzung der am optischen Übergang beteiligten Landau-Level Zustände. Dies ermöglicht einen direkten Nachweis sogenannter Bulk-Inversions-Asymmetrie-Effekte aus den Spektren. Im Verlauf der Arbeit wird zudem wiederholt ein Vergleich der Ergebnisse mit existierenden Publikationen gezogen, wobei sich zeigt, dass dort verwendete Modelle häufig unzureichend oder inkorrekt sind. Wo immer dies sinnvoll und ohne größeren Aufwand möglich ist, werden die Unterschiede zu Aussagen, die aus dem k·p-Modell heraus getroffen werden können, diskutiert. Zum Ende der Analyse hin wird verstärkt auf die Grenzen der k·p-Methode eingegangen und verbleibende Abweichungen zwischen Modell und Messung diskutiert. Dies beinhaltet sowohl die Qualität der verwendeten Modellparameter, als auch verschiedene Versuche, die in den Strukturen vorhandenen elektrostatischen Potentiale mit in die Modellierung zu integrieren. Abschließend wird ein Ausblick auf mögliche zukünftige Entwicklungen des Quecksilbercadmiumtellurid Schichtsystems und die Anwendung der hier vorgestellten Methodiken auf weitere Fragestellungen gegeben. KW - Quecksilbertellurid KW - Topologie KW - Oberfläche KW - Mercury telluride KW - Topology KW - THz KW - Surface Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-352127 ER - TY - JOUR A1 - Li, Donghai A1 - Shan, Hangyong A1 - Rupprecht, Christoph A1 - Knopf, Heiko A1 - Watanabe, Kenji A1 - Taniguchi, Takashi A1 - Qin, Ying A1 - Tongay, Sefaattin A1 - Nuß, Matthias A1 - Schröder, Sven A1 - Eilenberger, Falk A1 - Höfling, Sven A1 - Schneider, Christian A1 - Brixner, Tobias T1 - Hybridized exciton-photon-phonon states in a transition-metal-dichalcogenide van-der-Waals heterostructure microcavity JF - Physical Review Letters N2 - Excitons in atomically thin transition-metal dichalcogenides (TMDs) have been established as an attractive platform to explore polaritonic physics, owing to their enormous binding energies and giant oscillator strength. Basic spectral features of exciton polaritons in TMD microcavities, thus far, were conventionally explained via two-coupled-oscillator models. This ignores, however, the impact of phonons on the polariton energy structure. Here we establish and quantify the threefold coupling between excitons, cavity photons, and phonons. For this purpose, we employ energy-momentum-resolved photoluminescence and spatially resolved coherent two-dimensional spectroscopy to investigate the spectral properties of a high-quality-factor microcavity with an embedded WSe\(_2\) van-der-Waals heterostructure at room temperature. Our approach reveals a rich multi-branch structure which thus far has not been captured in previous experiments. Simulation of the data reveals hybridized exciton-photon-phonon states, providing new physical insight into the exciton polariton system based on layered TMDs. KW - strong coupling KW - laser spectroscopy KW - transition metal dichalcogenide KW - coherent multidimensional spectroscopy KW - exciton Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-351303 UR - https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.128.087401 SN - 1079-7114 ET - accepted version ER - TY - JOUR T1 - FCC-ee: The Lepton Collider: Future Circular Collider Conceptual Design Report Volume 2 JF - European Physical Journal - Special Topics N2 - In response to the 2013 Update of the European Strategy for Particle Physics, the Future Circular Collider (FCC) study was launched, as an international collaboration hosted by CERN. This study covers a highest-luminosity high-energy lepton collider (FCC-ee) and an energy-frontier hadron collider (FCC-hh), which could, successively, be installed in the same 100 km tunnel. The scientific capabilities of the integrated FCC programme would serve the worldwide community throughout the 21st century. The FCC study also investigates an LHC energy upgrade, using FCC-hh technology. This document constitutes the second volume of the FCC Conceptual Design Report, devoted to the electron-positron collider FCC-ee. After summarizing the physics discovery opportunities, it presents the accelerator design, performance reach, a staged operation scenario, the underlying technologies, civil engineering, technical infrastructure, and an implementation plan. FCC-ee can be built with today's technology. Most of the FCC-ee infrastructure could be reused for FCC-hh. Combining concepts from past and present lepton colliders and adding a few novel elements, the FCC-ee design promises outstandingly high luminosity. This will make the FCC-ee a unique precision instrument to study the heaviest known particles (Z, W and H bosons and the top quark), offering great direct and indirect sensitivity to new physics. KW - Large Hadron Collider KW - Double-Beta Decay KW - e(+)e(-) Collisions KW - Flavor Violation KW - Electroweak Measurements KW - Bhabha Scattering KW - Missing Energy KW - Single-Photon KW - Neutrino Mass KW - Higgy-Boson Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226947 VL - 228 IS - 2 ER - TY - JOUR T1 - FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1 JF - European Physical Journal C N2 - We review the physics opportunities of the Future Circular Collider, covering its e(+)e(-), pp, ep and heavy ion programmes. We describe the measurement capabilities of each FCC component, addressing the study of electroweak, Higgs and strong interactions, the top quark and flavour, as well as phenomena beyond the Standard Model. We highlight the synergy and complementarity of the different colliders, which will contribute to a uniquely coherent and ambitious research programme, providing an unmatchable combination of precision and sensitivity to new physics. KW - Electroweak Phase-Transition KW - By-Light Scattering KW - Deep Inelastic-scattering KW - Strange Baryon Production KW - Dark-Matter KW - Radiative-corrections KW - E(+)E(-) collicions KW - Transverse-Momentum KW - Top-Quark KW - Branching fractions Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226938 VL - 79 IS - 474 ER - TY - JOUR T1 - HE-LHC: The High-Energy Large Hadron Collider : Future Circular Collider Conceptual Design Report Volume 4 JF - European Physical Journal - Special Topics N2 - In response to the 2013 Update of the European Strategy for Particle Physics (EPPSU), the Future Circular Collider (FCC) study was launched as a world-wide international collaboration hosted by CERN. The FCC study covered an energy-frontier hadron collider (FCC-hh), a highest-luminosity high-energy lepton collider (FCC-ee), the corresponding 100 km tunnel infrastructure, as well as the physics opportunities of these two colliders, and a high-energy LHC, based on FCC-hh technology. This document constitutes the third volume of the FCC Conceptual Design Report, devoted to the hadron collider FCC-hh. It summarizes the FCC-hh physics discovery opportunities, presents the FCC-hh accelerator design, performance reach, and staged operation plan, discusses the underlying technologies, the civil engineering and technical infrastructure, and also sketches a possible implementation. Combining ingredients from the Large Hadron Collider (LHC), the high-luminosity LHC upgrade and adding novel technologies and approaches, the FCC-hh design aims at significantly extending the energy frontier to 100 TeV. Its unprecedented centre-of-mass collision energy will make the FCC-hh a unique instrument to explore physics beyond the Standard Model, offering great direct sensitivity to new physics and discoveries. KW - Event builder KW - Impact Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226928 VL - 228 IS - 5 ER - TY - JOUR T1 - FCC-hh: The Hadron Collider: Future Circular Collider Conceptual Design Report Volume 3 JF - European Physical Journal - Special Topics N2 - In response to the 2013 Update of the European Strategy for Particle Physics (EPPSU), the Future Circular Collider (FCC) study was launched as a world-wide international collaboration hosted by CERN. The FCC study covered an energy-frontier hadron collider (FCC-hh), a highest-luminosity high-energy lepton collider (FCC-ee), the corresponding 100km tunnel infrastructure, as well as the physics opportunities of these two colliders, and a high-energy LHC, based on FCC-hh technology. This document constitutes the third volume of the FCC Conceptual Design Report, devoted to the hadron collider FCC-hh. It summarizes the FCC-hh physics discovery opportunities, presents the FCC-hh accelerator design, performance reach, and staged operation plan, discusses the underlying technologies, the civil engineering and technical infrastructure, and also sketches a possible implementation. Combining ingredients from the Large Hadron Collider (LHC), the high-luminosity LHC upgrade and adding novel technologies and approaches, the FCC-hh design aims at significantly extending the energy frontier to 100TeV. Its unprecedented centre of-mass collision energy will make the FCC-hh a unique instrument to explore physics beyond the Standard Model, offering great direct sensitivity to new physics and discoveries. KW - Multiple-Scattering KW - Top-Quark KW - CERN KW - Energy KW - Reduction KW - Impact Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226917 VL - 228 ER - TY - JOUR T1 - Search for diboson resonances in hadronic final states in 139 fb\(^{-1}\) of \(pp\) collisions at √\(s\)=13 TeV with the ATLAS detector JF - Journal of High Energy Physics N2 - Narrow resonances decaying into WW, WZ or ZZ boson pairs are searched for in 139 fb(-1) of proton-proton collision data at a centre-of-mass energy of root s = 13TeV recorded with the ATLAS detector at the Large Hadron Collider from 2015 to 2018. The diboson system is reconstructed using pairs of high transverse momentum, large-radius jets. These jets are built from a combination of calorimeter- and tracker-inputs compatible with the hadronic decay of a boosted W or Z boson, using jet mass and substructure properties. The search is performed for diboson resonances with masses greater than 1.3TeV. No significant deviations from the background expectations are observed. Exclusion limits at the 95% confidence level are set on the production cross-section times branching ratio into dibosons for resonances in a range of theories beyond the Standard Model, with the highest excluded mass of a new gauge boson at 3.8TeV in the context of mass-degenerate resonances that couple predominantly to gauge bosons. KW - Hadron-Hadron scattering (experiments) Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226905 VL - 09 IS - 91 ER -