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High-repetition-rate white-light pump杙robe spectroscopy with a tapered fiber
M. Punke, F. Hoos, C. Karnutsch, U. Lemmer, N. Linder, K. Streubel  (pdf)
Optics Letters 31 (8), p. 1157-1159 (2006)

We have realized a 76 MHz white-light differential transmission spectroscopy system. The technique employs a Ti:sapphire laser oscillator TIF-50, Del Mar Ventures, San Diego (current model name Trestles 50) and a tapered fiber (NT&C, Marnheim, Germany) to generate a white-light continuum spanning almost the full visible to near-infrared spectral range. Using acousto-optical modulation and subsequent lock-in detection, transient relative transmission changes as small as 10−5 are detected. The method is applied to study the ultrafast gain dynamics of the active layer of a vertical-external-cavity surface-emitting laser based on a multiple-quantum-well structure.


Martin Punke: High-repetition-rate white-light pump杙robe spectroscopy with a tapered fiber. The technique employs a Ti:sapphire laser oscillator TIF-50, Del Mar Ventures, San Diego (current model name Trestles 50).


Fig.1 Schematic diagram of the experimental setup.
AOM, acousto-optic modulator; DC, dichroic mirror; DL, delay line; IF, variable interference filter; SHG, second harmonic generation.

Martin Punke: Tapered fiber output spectra. The technique employs a Ti:sapphire laser oscillator TIF-50, Del Mar Ventures, San Diego (current model name Trestles 50).

Fig 2. Tapered fiber output spectra.
(Photograph of the beam after diffraction on a grating.)






Martin Punke: Differential transmission measurements of the investigated AlGaInP MQW structure. The technique employs a Ti:sapphire laser oscillator TIF-50, Del Mar Ventures, San Diego (current model name Trestles 50).

Fig. 3 Differential transmission measurements of the investigated AlGaInP MQW structure.
Pump wavelength, 400 nm; pump pulse energy, 150 pJ.

 

Martin Punke received the M.Sc in electrical engineering and information technology from the University of Karlsruhe in 2003. In his master thesis he worked on the realization of a femtosecond pump-probe setup utilizing a tapered fiber for white-light generation. Since 2003, he has been working towards his PhD degree at the Light Technology Institute of the University of Karlsruhe. He is currently working on the combination of organic semiconductor devices like OLEDs, organic photodiodes and lasers with micro-optics for applications like biological sensor systems and optical interconnects. Martin Punke

Universität Karlsruhe (TH)
Light Technology Institute
Kaiserstr.12
D-76131 Karlsruhe
Martin.punke@lti.uni-karlsruhe.de


Martin Punke received the M.Sc in electrical engineering and information technology from the University of Karlsruhe in 2003. In his master thesis he worked on the realization of a femtosecond pump-probe setup utilizing a tapered fiber for white-light generation. Since 2003, he has been working towards his PhD degree at the Light Technology Institute of the University of Karlsruhe. He is currently working on the combination of organic semiconductor devices like OLEDs, organic photodiodes and lasers with micro-optics for applications like biological sensor systems and optical interconnects.

 

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Pulse strecher/compressor
Avoca SPIDER system
Buccaneer femtosecond fiber lasers with SHG Second Harmonic Generator
Cannon Ultra-Broadband Light Source
Cortes Cr:Forsterite Regenerative Amplifier
Infrared cross-correlator CCIR-800
Cross-correlator Rincon
Femtosecond Autocorrelator IRA-3-10
Kirra Faraday Optical Isolators
Mavericks femtosecond Cr:Forsterite laser
OAFP optical attenuator
Pearls femtosecond fiber laser (Er-doped fiber, 1530-1565 nm)
Pismo pulse picker
Reef-M femtosecond scanning autocorrelator for microscopy
Reef-RTD scanning autocorrelator
Reef-SS single shot autocorrelator
Femtosecond Second Harmonic Generator
Spectrometer ASP-100M
Spectrometer ASP-150C
Spectrometer ASP-IR
Tamarack and Buccaneer femtosecond fiber lasers (Er-doped fiber, 1560+/- 10nm)
Teahupoo femtosecond Ti:Sapphire regenerative amplifier
Femtosecond third harmonic generator
Tourmaline femtosecond fiber laser (1054 nm)
Tourmaline TETA Yb femtosecond amplified laser system
Tourmaline Yb-SS femtosecond solid state laser system
Trestles CW Ti:Sapphire laser
Trestles femtosecond Ti:Sapphire laser
Trestles Finesse femtosecond lasers system integrated with DPSS pump laser
Wedge Ti:Sapphire multipass amplifier

 

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