This article presents an overview of the physics and applications of the interaction of high intensity laser light with matter. It traces the crucial advances that have occurred over the past few decades in laser technology and nonlinear optics and then discusses physical phenomena that occur in intense laser fields and their modeling. After a description of the basic phenomena like multiphoton and tunneling ionization, the physics of plasma formed in dense matter is presented. Specific phenomena are chosen for illustration of the scientific and technological possibilities - simulation of astrophysical phenomena, relativistic nonlinear optics, laser wakefield acceleration, laser fusion, ultrafast real time X-ray diffraction, application of ...
By focusing petawatt peak power laser light to intensities up to 1021 W cm −2, highly relativistic ...
In the interaction of ultra-intense laser fields with matter, the target is rapidly ionized and a pl...
Recent results from high intensity (up to 5 × 10 20 W/cm 2 ) laser plasma interaction experiments a...
Abstract. This article presents an overview of the physics and applications of the in-teraction of h...
High-intensity lasers interacting with plasmas are used to study processes in the laboratory that wo...
As tabletop lasers continue to reach record levels of peak power, the interaction of light with matt...
By focusing petawatt peak power laser light to intensities up to 1021 Wcm−2, highly relativistic pla...
This cumulative thesis presents a summary of contributions made by the author over the past twelve y...
This thesis describes experimental discoveries related to laser-based ion acceleration from thin foi...
Recent ultra-short high-power lasers can provide ultra-high laser intensity over 1022 W/cm2 . Laser ...
Laser-matter interaction is one of the main topics in current physical research, due to the fact tha...
Since its birth, the laser has been extraordinarily effective in the study and applications of laser...
Intense laser-solid interactions have been the focus of much research for a number of decades, and m...
The field of laser-matter interaction traditionally deals with the response of atoms, molecules and ...
Rapid progress in ultra-intense laser technology has resulted in intensity levels surpassing 1022 W/...
By focusing petawatt peak power laser light to intensities up to 1021 W cm −2, highly relativistic ...
In the interaction of ultra-intense laser fields with matter, the target is rapidly ionized and a pl...
Recent results from high intensity (up to 5 × 10 20 W/cm 2 ) laser plasma interaction experiments a...
Abstract. This article presents an overview of the physics and applications of the in-teraction of h...
High-intensity lasers interacting with plasmas are used to study processes in the laboratory that wo...
As tabletop lasers continue to reach record levels of peak power, the interaction of light with matt...
By focusing petawatt peak power laser light to intensities up to 1021 Wcm−2, highly relativistic pla...
This cumulative thesis presents a summary of contributions made by the author over the past twelve y...
This thesis describes experimental discoveries related to laser-based ion acceleration from thin foi...
Recent ultra-short high-power lasers can provide ultra-high laser intensity over 1022 W/cm2 . Laser ...
Laser-matter interaction is one of the main topics in current physical research, due to the fact tha...
Since its birth, the laser has been extraordinarily effective in the study and applications of laser...
Intense laser-solid interactions have been the focus of much research for a number of decades, and m...
The field of laser-matter interaction traditionally deals with the response of atoms, molecules and ...
Rapid progress in ultra-intense laser technology has resulted in intensity levels surpassing 1022 W/...
By focusing petawatt peak power laser light to intensities up to 1021 W cm −2, highly relativistic ...
In the interaction of ultra-intense laser fields with matter, the target is rapidly ionized and a pl...
Recent results from high intensity (up to 5 × 10 20 W/cm 2 ) laser plasma interaction experiments a...