A simulation study of the coupled dynamics of amide I and amide II vibrations in an a-helix dissolved in water shows that two-dimensional (2D) infrared spectroscopy may be used to disentangle the energy transport along the helix through each of these modes from the energy relaxation between them. Time scales for both types of processes are obtained. Using polarization-dependent 2D spectroscopy is an important ingredient in the method we propose. The method may also be applied to other two-band systems, both in the infrared (collective vibrations) and the visible (excitons) parts of the spectrum.</p
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
We propose the possibility of using vibrational population transfer to enhance the structural marker...
Polaritonic chemistry—controlling chemical reactions by strongly coupling light modes with resonant ...
A simulation study of the coupled dynamics of amide I and amide II vibrations in an a-helix dissolve...
A simulation study of the coupled dynamics of amide I and amide II vibrations in an α-helix dissolve...
A simulation study of the coupled dynamics of amide I and amide II vibrations in an a-helix dissolve...
A simulation study of the coupled dynamics of amide I and amide II vibrations in an R-helix dissolve...
Two-dimensional infrared spectroscopy is capable of following the transfer of vibrational energy bet...
Population transfer between vibrational eigenstates is important for many phenomena in chemistry. In...
Author Institution: Department of Chemistry, Massachusetts Institute of TechnologyI will describe th...
We review recent work on the waiting time dynamics of coherent two-dimensional infrared (2DIR) spect...
Two-dimensional infrared (2D-IR) spectroscopy is a powerful experimental method for probing the stru...
This Thesis focuses on using ultrafast time-resolved infrared spectroscopy and two-dimensional infra...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
We propose the possibility of using vibrational population transfer to enhance the structural marker...
Polaritonic chemistry—controlling chemical reactions by strongly coupling light modes with resonant ...
A simulation study of the coupled dynamics of amide I and amide II vibrations in an a-helix dissolve...
A simulation study of the coupled dynamics of amide I and amide II vibrations in an α-helix dissolve...
A simulation study of the coupled dynamics of amide I and amide II vibrations in an a-helix dissolve...
A simulation study of the coupled dynamics of amide I and amide II vibrations in an R-helix dissolve...
Two-dimensional infrared spectroscopy is capable of following the transfer of vibrational energy bet...
Population transfer between vibrational eigenstates is important for many phenomena in chemistry. In...
Author Institution: Department of Chemistry, Massachusetts Institute of TechnologyI will describe th...
We review recent work on the waiting time dynamics of coherent two-dimensional infrared (2DIR) spect...
Two-dimensional infrared (2D-IR) spectroscopy is a powerful experimental method for probing the stru...
This Thesis focuses on using ultrafast time-resolved infrared spectroscopy and two-dimensional infra...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
We propose the possibility of using vibrational population transfer to enhance the structural marker...
Polaritonic chemistry—controlling chemical reactions by strongly coupling light modes with resonant ...