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Design and Construction of a Velocity-Map Imaging Spectrometer
Numerical simulations of highly efficient quantum memories
Material Considerations for Time-domain Optical Storage.
Preliminary Experimental Investigation of a Grazing Incident Pulsed Dye Laser.
Studies of perfusion at the Research Centre of Risoe and in conjunction with Photodynamic Therapy, emplying Laser Doppler Perfusion Imaging and Doppler Optical Coherence Tomography
Improvement of the Temporal Contrast of A Femtosecond Laser Pulse with A Non-Linear Sagnac Interferometer
Magnetic Field Dependence of Optical Coherence Times in Quantum Computer Hardware Based on Pr3+:Y2SiO5
Spin Coherence Excitation in Pr3+ :Y2SiO5
Investigation of Equipment and Processes that limit Photon Echo Signal Processing
Photon-echo-based Optical Data Compression Using an External Cavity Diode Laser
Flow Velocity Measurements using a Spectroscopic Laser Technique.
Monochromatized Synchrotron Radiation at the MAX Beamline 52.
Construction of a Wide-Field Optical Sectioning Microscope
Post Compression of High-Energy Femtosecond Laser Pulses Using Bulk Media
Evaluation of An Optical Technique to Measure Blood Volume Changes During Hemodialysis
The Heat Transfer Problem in Optically Pumped Semiconductor Lasers.
Generation of tunable broadband deep ultraviolet radiation from gaseous media using ultrashort laser pulses.
Most modern ultrafast lasers are based on mode-locked fiber or solid-state lasers and operate around the near infrared part of the electromagnetic spectrum. The widely spread CPA based Titanium Sapphire lasers can emit pulses centred around 800nm with durations down to 20 fs. However, for many ultrafast experiments light at different centre frequencies are required. In order to obtain other centre