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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 …
Ultrafast spectroscopy: State of the art and open challenges
Ultrafast spectroscopy techniques use sequences of ultrashort light pulses (with femto-to
attosecond durations) to study photoinduced dynamical processes in atoms, molecules …
attosecond durations) to study photoinduced dynamical processes in atoms, molecules …
Petawatt and exawatt class lasers worldwide
In the 2015 review paper 'Petawatt Class Lasers Worldwide'a comprehensive overview of
the current status of high-power facilities of was presented. This was largely based on facility …
the current status of high-power facilities of was presented. This was largely based on facility …
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 …
Petawatt class lasers worldwide
The use of ultra-high intensity laser beams to achieve extreme material states in the
laboratory has become almost routine with the development of the petawatt laser. Petawatt …
laboratory has become almost routine with the development of the petawatt laser. Petawatt …
Carrier dynamics in semiconductors studied with time-resolved terahertz spectroscopy
Time-resolved, pulsed terahertz spectroscopy has developed into a powerful tool to study
charge carrier dynamics in semiconductors and semiconductor structures over the past …
charge carrier dynamics in semiconductors and semiconductor structures over the past …
Design criteria for ultrafast optical parametric amplifiers
Optical parametric amplifiers (OPAs) exploit second-order nonlinearity to transfer energy
from a fixed frequency pump pulse to a variable frequency signal pulse, and represent an …
from a fixed frequency pump pulse to a variable frequency signal pulse, and represent an …
Femtosecond laser micromachining in transparent materials
Femtosecond laser micromachining can be used either to remove materials or to change a
material's properties, and can be applied to both absorptive and transparent substances …
material's properties, and can be applied to both absorptive and transparent substances …
Intense few-cycle laser fields: Frontiers of nonlinear optics
The rise time of intense radiation determines the maximum field strength atoms can be
exposed to before their polarizability dramatically drops due to the detachment of an outer …
exposed to before their polarizability dramatically drops due to the detachment of an outer …
Optics in the relativistic regime
The advent of ultraintense laser pulses generated by the technique of chirped pulse
amplification (CPA) along with the development of high-fluence laser materials has opened …
amplification (CPA) along with the development of high-fluence laser materials has opened …