3D laser device for ultrashort pulses
A laser device includes a laser module for generating a laser beam of sub-nanosecond laser pulses with a laser source, and arranged downstream of the laser module in a beam path of the laser beam, a deviating instrument for variable deviation of the laser beam in two spatial directions. The laser device further includes a focusing instrument for variable displacement of a focal point of the laser beam in a third spatial direction that corresponds to a propagation direction of the laser pulses.
1 . A laser device, comprising:
a laser module for generating a laser beam of sub-nanosecond laser pulses with a laser source,
arranged downstream of the laser module in a beam path of the laser beam, a deviating instrument for variable deviation of the laser beam in two spatial directions, and
a focusing instrument for variable displacement of a focal point of the laser beam in a third spatial direction that corresponds to a propagation direction of the laser pulses, wherein the focusing instrument comprises a first lens, a second lens, and a third lens disposed sequentially along the beam path, the first lens being a focus displacing lens and disposed upstream from the deviating instrument, the second lens being a collimating lens and disposed upstream from the deviating instrument, and the third lens being a focusing lens and disposed downstream from the deviating instrument.
2 . The laser device according to claim 1 ,
wherein
the deviating instrument comprises a 2D scanner having at least one scanner mirror for deviating the laser beam, wherein the at least one scanner mirror is arranged in the beam path and is capable of being tilted by a drive.
3 . The laser device according to claim 2 ,
wherein
the 2D scanner comprises a first scanner mirror and a second scanner mirror disposed downstream from the first scanner mirror in the beam path, wherein the first scanner mirror and the second scanner mirror are capable of being tilted independently of one another about different axes by a respective drive.
4 . The laser device according to claim 1 ,
wherein
the focusing instrument comprises an adjusting instrument, the adjusting instrument being adapted for electromagnetically actuated adjustment of the first lens.
5 . The laser device according to claim 1 ,
further comprising:
an amplifier configured as a rod amplifier.
6 . The laser device according to claim 5 ,
wherein
the rod amplifier is arranged for input and output of the laser beam through an end side of the rod amplifier, and a heat sink is arranged along a lateral face of the rod amplifier.
7 . The laser device according to claim 6 ,
wherein
the rod amplifier is thermally joined to the heat sink with solder, and/or the heat sink is configured to allow a coolant to flow therethrough.
8 . The laser device according to claim 1 ,
wherein
the laser source is configured to emit laser light with a wavelength in a near infrared range.
9 . The laser device according to claim 8 ,
wherein
the laser module comprises a frequency conversion element that is capable of being introduced into the beam path and removed from the beam path.
10 . The laser device according to claim 1 ,
further comprising:
an external acousto-optical modulator and a grating compressor.