High-harmonic generation from two weakly coupled molecules: a simple tight-binding model
- URL: http://arxiv.org/abs/2512.02623v1
- Date: Tue, 02 Dec 2025 10:33:19 GMT
- Title: High-harmonic generation from two weakly coupled molecules: a simple tight-binding model
- Authors: Lina Bielke, Samuel Schöpa, Falk-Erik Wiechmann, Franziska Fennel, Dieter Bauer,
- Abstract summary: Generation of high harmonics is a strongly nonlinear effect that allows to probe properties of the target.<n>Laser-polarization-dependent harmonic yield is sensitive to the weak couplings between nearest- and next-nearest-neighbor molecules.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: The generation of high harmonics is a strongly nonlinear effect that allows to probe properties of the target and to study electron dynamics in matter. It has been investigated in many different kinds of targets, including molecular gases, liquids and solids. Recently, high-harmonic generation was studied in organic molecular crystals by Wiechmann et al. [Nat. Commun. 16, 9890 (2025)]. It was found that the laser-polarization-dependent harmonic yield is sensitive to the weak couplings between nearest- and next-nearest-neighbor molecules. In this paper, the impact of the laser polarization angle and the intermolecular interaction on the harmonic yield is examined in detail using a simple but insightful two-dimensional tight-binding system that models a molecular dimer, i.e. two weakly coupled molecules. We find that the intensities of lower harmonic orders tend to maximize for a laser polarization direction aligning with the molecular axes, whereas higher harmonic orders rather show the strongest yield for a polarization direction along the intermolecular axis. We further demonstrate that the harmonic order at which the maximum flips from the molecular to the intermolecular direction strongly depends on the intermolecular coupling strength. To gain a deeper insight into the origins of the findings, we include a detailed adiabatic analysis, showing that the flipping of the maximum yield towards the intermolecular direction is already contained qualitatively in the adiabatically following states.
Related papers
- Orbital-resolved imaging of coherent femtosecond exciton dynamics in coupled molecules [39.034425621567394]
Optical excitation and control of excitonic wavepackets in organic molecules is the basis to energy conversion processes.<n>Here, we demonstrate orbital-resolved imaging of optically induced coherent exciton dynamics in single copper napthalocyanine (CuNc) molecules.<n>Results reveal an ultrafast exciton coherence time of 70 fs in a single molecule, which decreases for the triplet excitons in interacting molecules.
arXiv Detail & Related papers (2025-07-01T15:02:08Z) - A multireference picture of electronic excited states in vanadyl and copper tetraphenyl porphyrin molecular qubits [49.1574468325115]
Investigation of molecular qubits based on vanadyl and copper porphyrin.<n>Findings shed light on the nature of the excited states molecular qubits.
arXiv Detail & Related papers (2025-04-29T13:59:23Z) - Unraveling a cavity induced molecular polarization mechanism from collective vibrational strong coupling [0.0]
We show that collective vibrational strong coupling of molecules in thermal equilibrium can give rise to significant local electronic polarizations in the thermodynamic limit.
Our findings suggest that the thorough understanding of polaritonic chemistry, requires a self-consistent treatment of dressed electronic structure.
arXiv Detail & Related papers (2023-06-09T16:18:51Z) - Dynamics of molecular rotors in bulk superfluid helium [68.8204255655161]
We report on the experimental study of the laser-induced rotation of helium dimers inside the superfluid $4mathrmHe$ bath at variable temperature.
The observed temperature dependence suggests a non-equilibrium evolution of the quantum bath, accompanied by the emission of the wave of second sound.
arXiv Detail & Related papers (2023-04-08T01:22:19Z) - Engineering long-range molecular potentials by external drive [0.0]
We report the engineering of molecular potentials at large interatomic distances.
The molecular states are generated by off-resonant optical coupling to a highly excited, long-range Rydberg molecular potential.
Our results open numerous possibilities to create long-range molecules between ultracold ground state atoms.
arXiv Detail & Related papers (2023-03-14T09:01:19Z) - Rotational properties of two interacting cold polar molecules: linear, symmetric, and asymmetric tops [0.0]
We model the molecules as quantum rigid rotors to take their rotational degrees of freedom into account.
We find that the properties of the molecules depend strongly on the field's direction at short separations.
The latter provides insight into the possible effects of accounting for rotational degrees of freedom in molecular dipolar gases.
arXiv Detail & Related papers (2023-03-03T20:17:56Z) - Quantum Coherent Control of a Single Molecular-Polariton Rotation [2.2482144023488346]
We present a combined analytical and numerical study for coherent terahertz control of a single molecular polariton.
The presence of a cavity strongly modifies the post-pulse orientation of the polariton, making it difficult to obtain its maximal degree of orientation.
This work offers a new strategy to study rotational dynamics in the strong-coupling regime and provides a method for complete quantum coherent control of a single molecular polariton.
arXiv Detail & Related papers (2022-12-22T12:37:55Z) - Field-linked resonances of polar molecules [1.5954600055547938]
We demonstrate a new type of scattering resonances that is universal for a wide range of polar molecules.
The so-called field-linked resonances occur in the scattering of microwave-dressed molecules due to stable macroscopic tetramer states.
Our result paves the way for realizing dipolar superfluids and molecular supersolids as well as assembling ultracold polyatomic molecules.
arXiv Detail & Related papers (2022-10-24T15:26:33Z) - High-resolution 'magic'-field spectroscopy on trapped polyatomic
molecules [62.997667081978825]
Rapid progress in cooling and trapping of molecules has enabled first experiments on high resolution spectroscopy of trapped diatomic molecules.
Extending this work to polyatomic molecules provides unique opportunities due to more complex geometries and additional internal degrees of freedom.
arXiv Detail & Related papers (2021-10-21T15:46:17Z) - Molecular Interactions Induced by a Static Electric Field in Quantum
Mechanics and Quantum Electrodynamics [68.98428372162448]
We study the interaction between two neutral atoms or molecules subject to a uniform static electric field.
Our focus is to understand the interplay between leading contributions to field-induced electrostatics/polarization and dispersion interactions.
arXiv Detail & Related papers (2021-03-30T14:45:30Z) - Magnetic properties and quench dynamics of two interacting ultracold
molecules in a trap [0.0]
We investigate the magnetic properties and nonequilibrium dynamics of two interacting ultracold polar and paramagnetic molecules in a harmonic trap in external electric and magnetic fields.
The molecules interact via a multichannel two-body contact potential, incorporating the short-range anisotropy of intermolecular interactions.
arXiv Detail & Related papers (2020-10-22T17:35:46Z) - Dynamical Strengthening of Covalent and Non-Covalent Molecular
Interactions by Nuclear Quantum Effects at Finite Temperature [58.999762016297865]
Nuclear quantum effects (NQE) tend to generate delocalized molecular dynamics.
NQE often enhance electronic interactions and, in turn, can result in dynamical molecular stabilization at finite temperature.
Our findings yield new insights into the versatile role of nuclear quantum fluctuations in molecules and materials.
arXiv Detail & Related papers (2020-06-18T14:30:29Z) - Quantum coherent spin-electric control in a molecular nanomagnet at
clock transitions [57.50861918173065]
Electrical control of spins at the nanoscale offers architectural advantages in spintronics.
Recent demonstrations of electric-field (E-field) sensitivities in molecular spin materials are tantalising.
E-field sensitivities reported so far are rather weak, prompting the question of how to design molecules with stronger spin-electric couplings.
arXiv Detail & Related papers (2020-05-03T09:27:31Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.