Aspects of Two-photon Absorption of Squeezed Light: the CW limit
- URL: http://arxiv.org/abs/2205.07485v2
- Date: Tue, 23 Aug 2022 16:11:49 GMT
- Title: Aspects of Two-photon Absorption of Squeezed Light: the CW limit
- Authors: Christian Drago and John Sipe
- Abstract summary: We find an enhancement of the two-photon absorption due to resonant contributions from the large squeezed light bandwidth.
One-photon absorption is the dominant process in the region of parameter space where a large enhancement of the two-photon absorption is possible.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: We present a theoretical analysis of two-photon absorption of classical and
squeezed light valid when one-photon absorption to an intermediate state is
either resonant or far-detuned from resonance, and in both the low and high
intensity regimes. In this paper we concentrate on continuous-wave excitation,
although the approach we develop is more general. We calculate the energy
removed from an incident field for typical experimental parameters and consider
the limiting cases when the photon pairs are narrowband or broadband compared
to the molecular linewidths. We find an enhancement of the two-photon
absorption due to resonant contributions from the large squeezed light
bandwidth and due to photon bunching in the low intensity regime. However, in
both cases, for the parameters we choose, the one-photon absorption is the
dominant process in the region of parameter space where a large enhancement of
the two-photon absorption is possible.
Related papers
- Two-photon absorption cross sections of pulsed entangled beams [0.0]
Entangled two-photon absorption (ETPA) could form the basis of nonlinear quantum spectroscopy.
We show that quantum-enhanced cross sections can persist even to very large photon numbers.
arXiv Detail & Related papers (2023-11-30T19:57:41Z) - Dissipative stabilization of maximal entanglement between non-identical
emitters via two-photon excitation [49.1574468325115]
Two non-identical quantum emitters, when placed within a cavity and coherently excited at the two-photon resonance, can reach stationary states of nearly maximal entanglement.
We show that this mechanism is merely one among a complex family of phenomena that can generate both stationary and metastable entanglement when driving the emitters at the two-photon resonance.
arXiv Detail & Related papers (2023-06-09T16:49:55Z) - Photon generation and entanglement in a double superconducting cavity [105.54048699217668]
We study the dynamical Casimir effect in a double superconducting cavity in a quantum electrodynamics architecture.
We study the creation of photons when the walls oscillate harmonically with a small amplitude.
arXiv Detail & Related papers (2022-07-18T16:43:47Z) - Spatial properties of entangled two-photon absorption [0.0]
We experimentally study entangled two-photon absorption in Rhodamine 6G as a function of the spatial properties of a high flux of broadband entangled photon pairs.
We demonstrate a key signature dependence of the entangled two-photon absorption rate on the type of entangled pair flux attenuation.
arXiv Detail & Related papers (2022-06-01T13:56:40Z) - Theory of Two-Photon Absorption with Broadband Squeezed Vacuum [0.0]
We present an analytical quantum theoretic model for non-resonant molecular two-photon absorption (TPA) of broadband, spectrally multi-mode squeezed vacuum.
The results are relevant to the potential use of entangled-light TPA as a spectroscopic and imaging method.
arXiv Detail & Related papers (2022-02-02T19:15:20Z) - Hot-Band Absorption Can Mimic Entangled Two-Photon Absorption [52.77024349608834]
We investigated the fluorescence signals from Rhodamine 6G and LDS798 excited with a CW laser or an entangled photon pair source at 1060 nm.
We observed a signal that originates from hot-band absorption (HBA), which is one-photon absorption from thermally-populated vibrational levels of the ground electronic state.
For the typical conditions under which E2PEF measurements are performed, contributions from the HBA process could lead to a several orders-of-magnitude overestimate of the quantum advantage for excitation efficiency.
arXiv Detail & Related papers (2021-11-10T21:17:47Z) - Two-photon resonance fluorescence of two interacting non-identical
quantum emitters [77.34726150561087]
We study a system of two interacting, non-indentical quantum emitters driven by a coherent field.
We show that the features imprinted by the two-photon dynamics into the spectrum of resonance fluorescence are particularly sensitive to changes in the distance between emitters.
This can be exploited for applications such as superresolution imaging of point-like sources.
arXiv Detail & Related papers (2021-06-04T16:13:01Z) - Entangled Two-Photon Absorption Spectroscopy with Varying Pump
Wavelength [0.0]
In virtual-state spectroscopy, information about the energy-level structure of an arbitrary sample is retrieved by Fourier transforming sets of measured two-photon absorption probabilities.
We propose and discuss an extension of entangled two-photon absorption spectroscopy that solves this problem by means of repeated measurements at different pump wavelengths.
arXiv Detail & Related papers (2021-04-23T15:28:40Z) - Experimental feasibility of molecular two-photon absorption with
isolated time-frequency-entangled photon pairs [0.0]
Entangled photon pairs have been promised to deliver a substantial quantum advantage for two-photon absorption spectroscopy.
Recent work has challenged the previously reported magnitude of quantum enhancement in two-photon absorption.
arXiv Detail & Related papers (2020-12-12T05:36:50Z) - Setting bounds on two-photon absorption cross-sections in common
fluorophores with entangled photon pair excitation [48.7576911714538]
We use a fluorescence-based registration scheme to experimentally determine upper bounds on the cross-sections for six fluorophores.
For two samples that have been studied by others, Rhodamine 6G and 9R-S, we measure upper bounds four and five orders of magnitude lower than the previously reported cross-sections.
arXiv Detail & Related papers (2020-08-06T13:53:16Z) - Entanglement dynamics in dissipative photonic Mott insulators [62.997667081978825]
In spite of particle losses the quantum entanglement propagation exhibits a ballistic character with propagation speeds related to the differerent quasiparticles that are involved in the dynamics.
Our analysis reveals that photon dissipation has a strikingly asymmetric behavior in the two configurations with a much more dramatic role on the holon entanglement propagation than for the doublon case.
arXiv Detail & Related papers (2020-04-27T15:48:24Z)
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.