The ordinary Fano effect occurs in many-electron atoms and requires an autoionizing state. With such a state, photo-ionization may proceed via pathways that interfere, and the characteristic asymmetric resonance structures appear in the continuum. Here we demonstrate that Fano structure may also be induced without need of auto-ionization, by dressing the continuum with an ordinary bound state in any atom by a coupling laser. Using multi-photon processes gives complete, ultra-fast control over the interference. We show that a line-shape index q near unity (maximum asymmetry) may be produced in hydrogenic silicon donors with a relatively a weak beam. Since the Fano lineshape has both constructive and destructive interference, the laser contro...
Although the time-dependent buildup of asymmetric Fano line shapes in absorption spectra has been of...
We study tunable interaction of the resonances in the Mach-Zehnder-Fano interferometers (MZFIs). A d...
The ionization rate of an atom in a strong optical field can be resonantly enhanced by the presence ...
We consider photoassociation from a state of two free atoms when the continuum state is close to a m...
In this paper, autoionizing states in the one-dimensional helium atom are investigated by numerical ...
Firstly developed to explain the behaviour of electrons scattered by excited atoms [1], Fano’s model...
We report on the experimental observation of strong-field dressing of an autoionizing two-electron s...
It is an important challenge to reduce the power consumption and size of lasers, but progress has be...
The optical behavior of coupled systems, in which the breaking of parity and time-reversal symmetry ...
This book discusses the development of Fano-based techniques and reveals the characteristic properti...
Symmetric Lorentzian and asymmetric Fano line shapes are fundamental spectroscopic signatures that q...
We study photoionization of argon atoms close to the 3s23p6 → 3s13p64p Fano resonance using an attos...
Fano resonance, as a quantum interference effect for probing a discrete state embedded in a continuu...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
It has long been known that shallow donors such as phosphorous and the other group-V elements, have ...
Although the time-dependent buildup of asymmetric Fano line shapes in absorption spectra has been of...
We study tunable interaction of the resonances in the Mach-Zehnder-Fano interferometers (MZFIs). A d...
The ionization rate of an atom in a strong optical field can be resonantly enhanced by the presence ...
We consider photoassociation from a state of two free atoms when the continuum state is close to a m...
In this paper, autoionizing states in the one-dimensional helium atom are investigated by numerical ...
Firstly developed to explain the behaviour of electrons scattered by excited atoms [1], Fano’s model...
We report on the experimental observation of strong-field dressing of an autoionizing two-electron s...
It is an important challenge to reduce the power consumption and size of lasers, but progress has be...
The optical behavior of coupled systems, in which the breaking of parity and time-reversal symmetry ...
This book discusses the development of Fano-based techniques and reveals the characteristic properti...
Symmetric Lorentzian and asymmetric Fano line shapes are fundamental spectroscopic signatures that q...
We study photoionization of argon atoms close to the 3s23p6 → 3s13p64p Fano resonance using an attos...
Fano resonance, as a quantum interference effect for probing a discrete state embedded in a continuu...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
It has long been known that shallow donors such as phosphorous and the other group-V elements, have ...
Although the time-dependent buildup of asymmetric Fano line shapes in absorption spectra has been of...
We study tunable interaction of the resonances in the Mach-Zehnder-Fano interferometers (MZFIs). A d...
The ionization rate of an atom in a strong optical field can be resonantly enhanced by the presence ...