Several remote sensing applications require pulsed sources in the mid-infrared spectral regime with high average powers and good beam quality. Ho:YAG lasers have a number of attractive features for high power generation at 2.1 microns, either for direct applications or as a pump source for parametric conversion to longer infra-red wavelengths. Unfortunately, direct diode pumping of Ho:YAG is not practical, so a two-step process is generally employed in which one or more diode-pumped thulium-doped lasers are used to directly pump (in-band) the Ho:YAG laser. In response, we have investigated a slab-based architecture for scaling the output power of a Tm:YLF laser to the 100W power regime at 1.91microns, corresponding to a strong Ho:YAG absorp...
The Ho:YAP crystal is grown by the Czochralski technique. The room-temperature polarized absorption ...
The concept of a diode-end-pumped Tm3+ laser pumping a Ho3+ laser was utilised to develop mid-infrar...
; published 0 MONTH 0000 We report on the high-energy laser operation of an Ho:YAG oscillator resona...
We report the first demonstration of an intracavity side-pumped Ho:YAG slab laser, delivering 13W at...
Reported in this thesis are methodologies for power-scaling Ho:YAG lasers for both the continuous-wa...
We present a novel, compact and power scalable Ho:YAG laser based on intracavity side-pumping by a h...
Reported in this thesis are methodologies for power-scaling Ho:YAG lasers for both the continuous-wa...
Tm3+ and Ho3+ doped lasers operating in the 'eyesafe' 2µm region have recently attracted growing int...
In-band pumping of Ho-doped solid-state lasers by a cladding-pumped Tm fiber laser is an attractive ...
Abstract: We report the first demonstration of an intracavity side-pumped Ho:YAG slab laser, delive...
Thulium and holmium lasers operating near 2 μm are required for applications in various industries, ...
The thin disk laser is a successful concept for high output power and/or high pulse energy, high eff...
The thin disk laser is a successful concept for high output power and/or high pulse energy, high eff...
Ho:YLF is an attractive laser material for 2 µm high energy sources since it has a much longer upper...
Holmium fibre lasers are required for remote sensing, LIDAR and some medical applications [1]. In a...
The Ho:YAP crystal is grown by the Czochralski technique. The room-temperature polarized absorption ...
The concept of a diode-end-pumped Tm3+ laser pumping a Ho3+ laser was utilised to develop mid-infrar...
; published 0 MONTH 0000 We report on the high-energy laser operation of an Ho:YAG oscillator resona...
We report the first demonstration of an intracavity side-pumped Ho:YAG slab laser, delivering 13W at...
Reported in this thesis are methodologies for power-scaling Ho:YAG lasers for both the continuous-wa...
We present a novel, compact and power scalable Ho:YAG laser based on intracavity side-pumping by a h...
Reported in this thesis are methodologies for power-scaling Ho:YAG lasers for both the continuous-wa...
Tm3+ and Ho3+ doped lasers operating in the 'eyesafe' 2µm region have recently attracted growing int...
In-band pumping of Ho-doped solid-state lasers by a cladding-pumped Tm fiber laser is an attractive ...
Abstract: We report the first demonstration of an intracavity side-pumped Ho:YAG slab laser, delive...
Thulium and holmium lasers operating near 2 μm are required for applications in various industries, ...
The thin disk laser is a successful concept for high output power and/or high pulse energy, high eff...
The thin disk laser is a successful concept for high output power and/or high pulse energy, high eff...
Ho:YLF is an attractive laser material for 2 µm high energy sources since it has a much longer upper...
Holmium fibre lasers are required for remote sensing, LIDAR and some medical applications [1]. In a...
The Ho:YAP crystal is grown by the Czochralski technique. The room-temperature polarized absorption ...
The concept of a diode-end-pumped Tm3+ laser pumping a Ho3+ laser was utilised to develop mid-infrar...
; published 0 MONTH 0000 We report on the high-energy laser operation of an Ho:YAG oscillator resona...