Femtosecond laser pulse irradiation enables precise control of conductivity in materials, revolutioniz-ing fields like nanoelectronics and materials science. It offers rapid modulation within femtosecond timescales, facilitating advancements in ultrafast electronics and high-speed data processing. In this talk, we will focus on the photoinduced reduction of conductivity in incommensurate crystals through excitation of electrons into localized states, revealing potential applications in optoelectronics, ultrafast switches, and photonic devices
Various structures can be produced at the focal point inside a transparent material by using pulsed ...
Viele fundamentale Prozesse in kondensierter Materie werden durch die Wechselwirkung zwischen Elektr...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
In this paper, we demonstrate the ultrafast reduction of conductivity in an incommensurate crystal s...
A femtosecond (fs) pulse duration is shorter than many physical/chemical characteristic times, such ...
Processing of materials by ultrashort laser pulses has evolved significantly over the last decade an...
The latest advances in laser technology now enable the generation and control of few-cycle lasers in...
The recent development of femtosecond electron and x-ray techniques for diffraction and imaging allo...
Materialien, in denen starke Kopplungen zwischen Elektronen, Spins und Gitter auftreten, haben faszi...
International audienceUltrafast lasers have been a revolution in a number of areas of science and te...
Picosecond optoelectronic switches are used to generate electrical pulses with picosecond duration f...
The conductivity of a dielectric is reversibly increased by several orders of magnitude on a femtose...
In recent years laser light has been used to control the motion of electron waves. Electrons can now...
Title: Ultrafast dynamics of charge carriers in 2D materials Author: Bc. Petr Koutenský Department: ...
Tailoring materials by microstructuring, nanostructuring, coating or other techniques is one of the ...
Various structures can be produced at the focal point inside a transparent material by using pulsed ...
Viele fundamentale Prozesse in kondensierter Materie werden durch die Wechselwirkung zwischen Elektr...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
In this paper, we demonstrate the ultrafast reduction of conductivity in an incommensurate crystal s...
A femtosecond (fs) pulse duration is shorter than many physical/chemical characteristic times, such ...
Processing of materials by ultrashort laser pulses has evolved significantly over the last decade an...
The latest advances in laser technology now enable the generation and control of few-cycle lasers in...
The recent development of femtosecond electron and x-ray techniques for diffraction and imaging allo...
Materialien, in denen starke Kopplungen zwischen Elektronen, Spins und Gitter auftreten, haben faszi...
International audienceUltrafast lasers have been a revolution in a number of areas of science and te...
Picosecond optoelectronic switches are used to generate electrical pulses with picosecond duration f...
The conductivity of a dielectric is reversibly increased by several orders of magnitude on a femtose...
In recent years laser light has been used to control the motion of electron waves. Electrons can now...
Title: Ultrafast dynamics of charge carriers in 2D materials Author: Bc. Petr Koutenský Department: ...
Tailoring materials by microstructuring, nanostructuring, coating or other techniques is one of the ...
Various structures can be produced at the focal point inside a transparent material by using pulsed ...
Viele fundamentale Prozesse in kondensierter Materie werden durch die Wechselwirkung zwischen Elektr...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...