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We present a unified variational treatment of the magnetic dipole matrix elements, Einstein coefficients and line strength for general open-shell diatomic molecules in the general purpose diatomic code Duo. Building on previous work in…

Atmospheric and Oceanic Physics · Physics 2025-04-08 Wilfrid Somogyi , Sergey N. Yurchenko , Gap-Sue Kim

We develop a many-body approach to the behavior of exciton bound states and the conduction electron band edge in a surrounding electron-hole plasma with a focus on the absorption spectrum of Rydberg excitons in cuprous oxide. The interplay…

Mesoscale and Nanoscale Physics · Physics 2019-10-28 Dirk Semkat , Holger Fehske , Heinrich Stolz

Hosting giant Rydberg excitons with principal quantum numbers up to n = 30, cuprous oxide (Cu2O) provides a rare solid-state setting for exploring Rydberg physics, as exemplified by the blockade effect. Here we access the strongly…

The recent observation of dipole-allowed $P$-excitons up to principal quantum numbers of $n=25$ in cuprous oxide has given insight into exciton states with unprecedented spectral resolution. While so far the exciton description as a…

Materials Science · Physics 2015-07-10 J. Thewes , J. Heckötter , T. Kazimierczuk , M. Aßmann , D. Fröhlich , M. Bayer , M. A. Semina , M. M. Glazov

In this work we predict the existence of a novel species of Wannier excitons when exposed to crossed electric and magnetic fields. In particular, we present a theory of giant-dipole excitons in $\textrm{Cu}_2\rm O$ in crossed fields. Within…

Mesoscale and Nanoscale Physics · Physics 2017-06-14 Markus Kurz , Peter Grünwald , Stefan Scheel

We studied the electron transfer from excitons in adsorbed indoline dye layers across the organic-inorganic interface. The hybrids consist of indoline derivatives on the one hand and different inorganic substrates (TiO$_2$, ZnO,…

We present a method to calculate the exciton spectra of all direct semiconductors with a complex valence band structure. The Schr\"odinger equation is solved using a complete basis set with Coulomb Sturmian functions. This method also…

Materials Science · Physics 2016-05-09 Frank Schweiner , Jörg Main , Matthias Feldmaier , Günter Wunner , Christoph Uihlein

A semi-quantitative cluster approach is developed to describe the charge transfer (CT) electron-hole excitations in insulating cuprates in a rather wide energy range up to 10- 15 eV. It generalizes the Zhang-Ng (ZN) model of CT excitons by…

Strongly Correlated Electrons · Physics 2016-08-16 A. S. Moskvin , S. -L. Drechsler , R. Hayn , J. Málek

We study the $^1$S$_0 - ^3$D$_2$ and $^1$S$_0 - ^3$D$_3$ transitions in Cu II and the $^1$S$_0 - ^3$P$^{\rm o}_2$ transition in Yb III as possible candidates for the optical clock transitions. A recently developed version of the…

Atomic Physics · Physics 2021-12-14 Saleh O. Allehabi , V. A. Dzuba , V. V. Flambaum

Charge-transfer excitations are of paramount importance for understanding the electronic structure of copper-oxide based high-temperature superconductors. In this study, we investigate the response of a Bi$_2$Sr$_2$CaCu$_2$O$_{\mathrm{8}+…

Rydberg excitons in $\mathrm{Cu_2O}$ simultaneously give rise to two very different optical responses under resonant two-photon excitation: a coherent second-harmonic signal mediated by the excitonic second order susceptibility tensor…

We propose a scheme for calculation of optical functions of a semiconductor with Rydberg excitons, for a wide interval of dimensions. We start with 2-dimensional structure, then going to thin films and ending on 3-dimensional bulk crystals.…

Mesoscale and Nanoscale Physics · Physics 2020-05-13 David Ziemkiewicz , Karol Karpiński , Sylwia Zielińska-Raczyńska , Gerard Czajkowski

The quantum confinement of Rydberg excitons is an important step towards exploiting their large nonlinearities for quantum applications. We observe Rydberg excitons in natural nanoparticles of Cu$_2$O. We resolve up to the principal quantum…

Hydrogen-like systems in ultra-high magnetic fields are of significant interest in interdisciplinary research. Previous studies have focused on the exciton wavefunction shrinkage under magnetic fields down to artificial crystal lattices…

Materials Science · Physics 2025-10-02 Zhuo Yang , Jinbo Wang , Yuto Ishii , Duncan K. Maude , Atsuhiko Miyata , Yasuhiro H. Matsuda

The complex valence band structure of bulk cuprous oxide necessitates going beyond the parabolic approximation to precisely estimate exciton binding energies. The same is true for excitons in cuprous oxide quantum wells, for which many…

Mesoscale and Nanoscale Physics · Physics 2026-03-13 Niklas Scheuler , Jörg Main , Patric Rommel , Frieder Pfeiffer , Stefan Scheel , Pavel A. Belov

There are increasing indications that superconductivity competes with other orders in cuprate superconductors, but obtaining direct evidence with bulk-sensitive probes is challenging. We have used resonant soft x-ray scattering to identify…

Actively tunable photonic devices are vital for next-generation optoelectronics requiring rapid switching and high bandwidth. Although organic optoelectronic devices have found wide application, their use as optical modulators has been…

The fluctuation exchange, or FLEX, approximation for interacting electrons is applied to study instabilities in the standard three-band model for CuO2 layers in the high-temperature superconductors. Both intra-orbital and near-neigbor…

Superconductivity · Physics 2009-10-30 G. Esirgen , N. E. Bickers

N-heterocyclic carbene (NHC) iridium (III) complexes are considered as promising candidates for blue emitters in organic light-emitting diodes. They can play the roles of the emitter as well as of electron and hole transporters in the same…

Materials Science · Physics 2024-02-26 Irina V. Lebedeva , Joaquim Jornet-Somoza

The normal state optical conductivity is calculated for a layered metal with two layers per unit cell coupled through a transverse hopping matrix element $t_\perp$. The optical response involves an interband term in addition to the more…

Condensed Matter · Physics 2009-10-28 W. A. Atkinson , J. P. Carbotte