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Two-dimensional electronic spectroscopy
Two-dimensional electronic spectroscopy (2DES) is a popular technique that can track
ultrafast coherent and incoherent processes in real time. Since its development in the late …
ultrafast coherent and incoherent processes in real time. Since its development in the late …
Coherent two-dimensional and broadband electronic spectroscopies
Over the past few decades, coherent broadband spectroscopy has been widely used to
improve our understanding of ultrafast processes (eg, photoinduced electron transfer, proton …
improve our understanding of ultrafast processes (eg, photoinduced electron transfer, proton …
Quantum biology: An update and perspective
Understanding the rules of life is one of the most important scientific endeavours and has
revolutionised both biology and biotechnology. Remarkable advances in observation …
revolutionised both biology and biotechnology. Remarkable advances in observation …
Coherence in Chemistry: Foundations and Frontiers
Coherence refers to correlations in waves. Because matter has a wave-particle nature, it is
unsurprising that coherence has deep connections with the most contemporary issues in …
unsurprising that coherence has deep connections with the most contemporary issues in …
2D electronic spectroscopic techniques for quantum technology applications
E Collini - The Journal of Physical Chemistry C, 2021 - ACS Publications
2D electronic spectroscopy (2DES) techniques have gained particular interest given their
capability of following ultrafast coherent and noncoherent processes in real-time. Although …
capability of following ultrafast coherent and noncoherent processes in real-time. Although …
Progress and prospects in optical ultrafast microscopy in the visible spectral region: Transient absorption and two-dimensional microscopy
Ultrafast optical microscopy, generally employed by incorporating ultrafast laser pulses into
microscopes, can provide spatially resolved mechanistic insight into scientific problems …
microscopes, can provide spatially resolved mechanistic insight into scientific problems …
Quantum dynamics simulations of the 2D spectroscopy for exciton polaritons
We develop an accurate and numerically efficient non-adiabatic path-integral approach to
simulate the non-linear spectroscopy of exciton–polariton systems. This approach is based …
simulate the non-linear spectroscopy of exciton–polariton systems. This approach is based …
Energy relaxation pathways between light-matter states revealed by coherent two-dimensional spectroscopy
Coupling matter excitations to electromagnetic modes inside nano-scale optical resonators
leads to the formation of hybrid light-matter states, so-called polaritons, allowing the …
leads to the formation of hybrid light-matter states, so-called polaritons, allowing the …
Inter-subunit energy transfer processes in a minimal plant photosystem II supercomplex
Photosystem II (PSII) is an integral part of the photosynthesis machinery, in which several
light-harvesting complexes rely on inter-complex excitonic energy transfer (EET) processes …
light-harvesting complexes rely on inter-complex excitonic energy transfer (EET) processes …
Coherent multidimensional spectroscopy in polariton systems
The fast dynamics of molecular polaritonics is scrutinized theoretically through the
implementation of two-dimensional spectroscopy protocols. We derive conceptually simple …
implementation of two-dimensional spectroscopy protocols. We derive conceptually simple …