Stark effect in low-dimension hydrogen
arXiv:1510.01551 · doi:10.1103/PhysRevA.93.013409
Abstract
Studies of atomic systems in electric fields are challenging because of the diverging perturbation series. However, physically meaningful Stark shifts and ionization rates can be found by analytical continuation of the series using appropriate branch cut functions. We apply this approach to low-dimensional hydrogen atoms in order to study the effects of reduced dimensionality. We find that modifications by the electric field are strongly suppressed in reduced dimensions. This finding is explained from a Landau-type analysis of the ionization process.
Cited by in corpus (21)
- Interlayer excitons in van der Waals heterostructures: Binding energy, Stark shift, and field-induced dissociation
- Fast Summation of Divergent Series and Resurgent Transseries in Quantum Field Theories from Meijer-G Approximants
- Field-induced dissociation of two-dimensional excitons in transition-metal dichalcogenides
- A new method to sum divergent power series: educated match
- Theoretical methods for excitonic physics in two-dimensional materials
- Hypergeometric resummation of self-consistent sunset diagrams for electron-boson quantum many-body systems out of equilibrium
- Anisotropic Stark shift, field-induced dissociation, and electroabsorption of excitons in phosphorene
- Precise Critical Exponents of the O(N)-Symmetric Quantum field Model using Hypergeometric-Meijer Resummation
- Weak-Coupling, Strong-Coupling and Large-Order Parametrization of the Hypergeometric-Meijer Approximants
- The -point anomaly in view of the seven-loop Hypergeometric resummation for the critical exponent of the model
- Hypergeometric continuation of divergent perturbation series. II. Comparison with Shanks transformation and Padé approximation
- Extrapolating the precision of the Hypergeometric Resummation to Strong couplings with application to the Symmetric Field Theory
- Analytical Quantitative Semi-Classical Approach to the LoSurdo-Stark Effect and Ionization in 2D excitons
- Extrapolation from hypergeometric functions, continued functions and Borel-Leroy transformation; Resummation of perturbative renormalization functions from field theories
- Addressing energy density functionals in the language of path-integrals I: Comparative study of diagrammatic techniques applied to the (0+0)-D -symmetric -theory
- Dynamic polarizability of low-dimensional excitons
- High-Order Parametrization of the Hypergeometric-Meijer Approximants
- Second-order Stark effect and polarizability of a relativistic two-dimensional hydrogen-like atom in the ground state
- Finite-difference time-domain simulation of strong-field ionization: Perfectly matched layer approach
- Critical Exponents of the O(N)-symmetric Model from the \boldmath{\large{ }} Hypergeometric-Meijer Resummation
- Summed series involving \,_{1}F_{2} hypergeometric functions