© 2019, The Author(s).To generalize the applicability of the temporal characterization technique called “tunneling ionization with a perturbation for the time-domain observation of an electric field” (TIPTOE), the technique is examined in the multicycle regime over a broad wavelength range, from the UV to the IR range. The technique is rigorously analyzed first by solving the time-dependent Schrödinger equation. Then, experimental verification is demonstrated over an almost 5-octave wavelength range at 266, 1800, 4000 and 8000 nm by utilizing the same nonlinear medium – air. The experimentally obtained dispersion values of the materials used for the dispersion control show very good agreement with the ones calculated using the material disp...
We present a theoretical analysis of the time-gated phase matching (ionization gating) mechanism in ...
Electronic dynamics takes place on the attosecond timescale and can thus only be studied using a too...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.Ultrafast optical pulses are use...
The precise temporal characterization of laser pulses is crucial for ultrashort applications in biol...
© 2021, The Author(s).We present a reconstruction algorithm developed for the temporal characterizat...
A single-cycle laser pulse was generated using a two-stage compressor and characterized using a puls...
Temporal characterization of a laser pulse is an essential task in many applications. Temporal chara...
High-order harmonics generated through the interaction of atoms and strong laser fields are a versat...
Two important frontiers in the field of ultrashort pulse measurement are the complete temporal measu...
International audienceWe review different methods for characterizing mid-infrared femtosecond pulses...
This thesis deals with the dynamical processes in atoms and small molecules initiated by the absorpt...
Nuclear and electronic dynamics in atoms and molecules are the foundation of many physical processes...
Intense ultrashort X-ray pulses produced by modern free-electron lasers (FELs) allow one to probe bi...
The introduction of mid-IR optical parametric chirped pulse amplifiers (OPCPAs) has catalyzed intere...
Here we present an experimental as well as theoretical study of third-harmonic generation in tightly...
We present a theoretical analysis of the time-gated phase matching (ionization gating) mechanism in ...
Electronic dynamics takes place on the attosecond timescale and can thus only be studied using a too...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.Ultrafast optical pulses are use...
The precise temporal characterization of laser pulses is crucial for ultrashort applications in biol...
© 2021, The Author(s).We present a reconstruction algorithm developed for the temporal characterizat...
A single-cycle laser pulse was generated using a two-stage compressor and characterized using a puls...
Temporal characterization of a laser pulse is an essential task in many applications. Temporal chara...
High-order harmonics generated through the interaction of atoms and strong laser fields are a versat...
Two important frontiers in the field of ultrashort pulse measurement are the complete temporal measu...
International audienceWe review different methods for characterizing mid-infrared femtosecond pulses...
This thesis deals with the dynamical processes in atoms and small molecules initiated by the absorpt...
Nuclear and electronic dynamics in atoms and molecules are the foundation of many physical processes...
Intense ultrashort X-ray pulses produced by modern free-electron lasers (FELs) allow one to probe bi...
The introduction of mid-IR optical parametric chirped pulse amplifiers (OPCPAs) has catalyzed intere...
Here we present an experimental as well as theoretical study of third-harmonic generation in tightly...
We present a theoretical analysis of the time-gated phase matching (ionization gating) mechanism in ...
Electronic dynamics takes place on the attosecond timescale and can thus only be studied using a too...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2004.Ultrafast optical pulses are use...