Femtosecond laser interaction with dielectrics has unique characteristics for micromachining, notably non-thermal interaction with materials, precision and flexibility. The nature of this interaction is highly nonlinear due to multiphoton ionization, so the laser energy can be nonlinearly absorbed by the material, leading to permanent change in the material properties in a localized region of Mu-m3. This dissertation demonstrated the potential of these nonlinear interactions induced changes (index modification and ablation for machining) in the dielectrics and explored several practical applications. We studied femtosecond laser ablation of Poly-methayl methacrylate (PMMA) under single and multiple pulse irradiation regimes. We demonstrate...
We describe several approaches to basic femtosecond machining and materials processing that should l...
Recently, a new laser micromachining technique using multiple femtosecond pulses with a picosecond-t...
This dissertation focuses on the development of micromachining technology based on femtosecond ablat...
We show that ablation features in poly-methyl methacrylate (PMMA) induced by a single femtosecond la...
Nanoscience has attracted significant attention in recent years due to the nanomaterials and nonostr...
Because of the unique laser-matter interaction processes involved, femtosecond laser micro-machining...
Materials irradiated by ultrashort laser pulses can undergo a variety of surface relief and structur...
Laser micro-machining has been widely applied for material processing in many industries. A phenomen...
Ultrashort laser pulses with durations in the femtosecond range up to a few picoseconds provide a un...
Doctor of PhilosophyDepartment of Industrial and Manufacturing Systems EngineeringShuting LeiShuting...
The effects of femtosecond laser ablation on the physical and chemical properties at the surface of ...
ABSTRACT: We have investigated the use of tightly focused, temporally shaped femtosecond (fs)-laser ...
We describe several approaches to basic femtosecond machining and materials processing that should l...
In the last decade stable ultra-short pulsed (USP) laser systems have become more widely available a...
Main goal of our study ws a better understanding on laser-induced micro-machining of brittle substan...
We describe several approaches to basic femtosecond machining and materials processing that should l...
Recently, a new laser micromachining technique using multiple femtosecond pulses with a picosecond-t...
This dissertation focuses on the development of micromachining technology based on femtosecond ablat...
We show that ablation features in poly-methyl methacrylate (PMMA) induced by a single femtosecond la...
Nanoscience has attracted significant attention in recent years due to the nanomaterials and nonostr...
Because of the unique laser-matter interaction processes involved, femtosecond laser micro-machining...
Materials irradiated by ultrashort laser pulses can undergo a variety of surface relief and structur...
Laser micro-machining has been widely applied for material processing in many industries. A phenomen...
Ultrashort laser pulses with durations in the femtosecond range up to a few picoseconds provide a un...
Doctor of PhilosophyDepartment of Industrial and Manufacturing Systems EngineeringShuting LeiShuting...
The effects of femtosecond laser ablation on the physical and chemical properties at the surface of ...
ABSTRACT: We have investigated the use of tightly focused, temporally shaped femtosecond (fs)-laser ...
We describe several approaches to basic femtosecond machining and materials processing that should l...
In the last decade stable ultra-short pulsed (USP) laser systems have become more widely available a...
Main goal of our study ws a better understanding on laser-induced micro-machining of brittle substan...
We describe several approaches to basic femtosecond machining and materials processing that should l...
Recently, a new laser micromachining technique using multiple femtosecond pulses with a picosecond-t...
This dissertation focuses on the development of micromachining technology based on femtosecond ablat...