Recently a remarkable phenomenon in ultrafast laser processing of transparent materials has been reported manifesting itself as a change in material modification by reversing the writing direction. It has been experimentally demonstrated that the pulse front tilt is responsible for the occurrence of directional dependence. Additionally, an anisotropic cavitation was observed in the vicinity of the focus at high fluences. The bubbles, formed in the bulk of the glass, can be trapped and manipulated in the plane perpendicular to the light propagation direction by controlling the laser writing direction relative to the tilt of the pulse front. Another intriguing effect recently discovered occurs when the direction of the femtosecond laser beam ...
An overview of recent achievements in the field of femtosecond laser writing in transparent material...
Modification of transparent materials with ultrafast lasers has attracted considerable interest due ...
Interaction of intense ultrashort light pulses with transparent materials reveals new properties and...
Since the discovery of lasers, it was believed that a Gaussian mode of a laser beam interacting with...
Common beliefs that laser writing does not change when reversing beam scan or propagation direction ...
Common beliefs that laser writing does not change when reversing beam scan or propagation direction ...
Modification of transparent materials with ultrafast lasers has attracted considerable interest due ...
Photosensitivity is a material property that is relevant to many phenomena and applications, from ph...
Modification of transparent materials with ultrafast lasers has attracted considerable interest due ...
The nano-structuring of transparent media with subpicosecond laser pulses has attracted significant ...
Shaping light fields in both space and time provides new degrees of freedom to manipulate light-matt...
Modification of transparent materials with ultrafast lasers has attracted considerable interest due ...
A remarkable phenomenon in ultrafast laser processing of transparent materials, in particular, silic...
Control of structural modifications inside transparent materials by varying the direction of pulse f...
Control of structural modifications inside silica glass by changing the front tilt of an ultrashort ...
An overview of recent achievements in the field of femtosecond laser writing in transparent material...
Modification of transparent materials with ultrafast lasers has attracted considerable interest due ...
Interaction of intense ultrashort light pulses with transparent materials reveals new properties and...
Since the discovery of lasers, it was believed that a Gaussian mode of a laser beam interacting with...
Common beliefs that laser writing does not change when reversing beam scan or propagation direction ...
Common beliefs that laser writing does not change when reversing beam scan or propagation direction ...
Modification of transparent materials with ultrafast lasers has attracted considerable interest due ...
Photosensitivity is a material property that is relevant to many phenomena and applications, from ph...
Modification of transparent materials with ultrafast lasers has attracted considerable interest due ...
The nano-structuring of transparent media with subpicosecond laser pulses has attracted significant ...
Shaping light fields in both space and time provides new degrees of freedom to manipulate light-matt...
Modification of transparent materials with ultrafast lasers has attracted considerable interest due ...
A remarkable phenomenon in ultrafast laser processing of transparent materials, in particular, silic...
Control of structural modifications inside transparent materials by varying the direction of pulse f...
Control of structural modifications inside silica glass by changing the front tilt of an ultrashort ...
An overview of recent achievements in the field of femtosecond laser writing in transparent material...
Modification of transparent materials with ultrafast lasers has attracted considerable interest due ...
Interaction of intense ultrashort light pulses with transparent materials reveals new properties and...