Esser Dagmar, Rezaei Saeid, Li Jianzhao, Herman Peter R, Gottmann Jens
RWTH Aachen University, Steinbachstraße 15, 52074 Aachen, Germany .
Opt Express. 2011 Dec 5;19(25):25632-42. doi: 10.1364/OE.19.025632.
Bursts of femtosecond laser pulses with a repetition rate of f = 38.5MHz were created using a purpose-built optical resonator. Single Ti:Sapphire laser pulses, trapped inside a resonator and released into controllable burst profiles by computer generated trigger delays to a fast Pockels cell switch, drove filamentation-assisted laser machining of high aspect ratio holes deep into transparent glasses. The time dynamics of the hole formation and ablation plume physics on 2-ns to 400-ms time scales were examined in time-resolved side-view images recorded with an intensified-CCD camera during the laser machining process. Transient effects of photoluminescence and ablation plume emissions confirm the build-up of heat accumulation effects during the burst train, the formation of laser-generated filaments and plume-shielding effects inside the deeply etched vias. The small time interval between the pulses in the present burst train enabled a more gentle modification in the laser interaction volume that mitigated shock-induced microcracks compared with single pulses.
使用特制的光学谐振器产生重复频率为f = 38.5MHz的飞秒激光脉冲串。单个钛宝石激光脉冲被困在谐振器内,并通过计算机生成的触发延迟发送到快速普克尔盒开关,从而释放出可控的脉冲串轮廓,驱动了对透明玻璃进行高纵横比深孔的丝状辅助激光加工。在激光加工过程中,用增强型电荷耦合器件相机记录的时间分辨侧视图图像中,研究了2纳秒至400毫秒时间尺度上的孔形成时间动态和烧蚀羽流物理过程。光致发光和烧蚀羽流发射的瞬态效应证实了脉冲串期间热积累效应的形成、激光产生的细丝的形成以及深蚀刻通孔内的羽流屏蔽效应。与单脉冲相比,当前脉冲串中脉冲之间的小时间间隔使得激光相互作用体积的改变更加平缓,从而减轻了冲击诱导的微裂纹。