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Featured researches published by Heiko Ridderbusch.


IEEE Journal of Quantum Electronics | 2007

Saturation of 1047- and 1064-nm Absorption in

Heiko Ridderbusch; Thomas Graf

To investigate the physical mechanism of the saturation process in Cr4+:YAG crystals we solved the three coupled rate equations which describe the saturable absorber. We experimentally verified this model using two lasers with nanosecond pulses and continuous-wave radiation. We used crystalline and ceramic Cr4+-doped YAG saturable absorbers with various initial transmissions. The ratio between the ground and the excited-state absorption cross section at 1064 nm was measured to be between 3.8 plusmn 0.2 and 4.7 plusmn 0.2 for crystalline and 3.6 plusmn 0.1 for ceramic Cr4+:YAG. The ratio between the above named cross sections at 1047 nm was found to be 6.2 plusmn 0.2 for both crystalline and ceramic Cr4+:YAG. With these results the ground-state and the excited-state absorption cross sections at 1047 nm were calculated to be (9.55plusmn0.01)times10-19 cm2 and (1.54plusmn0.03)times10-19 cm2, respectively


Archive | 2007

{\hbox {Cr}}^{4+}

Werner Herden; Manfred Vogel; Heiko Ridderbusch


Archive | 2010

:YAG Crystals

Martin Weinrotter; Werner Herden; Pascal Woerner; Juergen Raimann; Heiko Ridderbusch


Archive | 2006

Ignition device for an internal combustion engine

Manfred Vogel; Werner Herden; Heiko Ridderbusch


Archive | 2007

Laser ignition device

Werner Herden; Manfred Vogel; Heiko Ridderbusch


Archive | 2007

Internal Combustion Engine and Method for Operating an Internal Combustion Engine by Means of a Laser Ignition Unit

Werner Herden; Manfred Vogel; Heiko Ridderbusch


Archive | 2011

Method for operating an ignition device for an internal combustion engine

Rene Hartke; Heiko Ridderbusch


Archive | 2006

Spark plug for an internal combustion engine and method for the operation thereof

Manfred Vogel; Werner Herden; Heiko Ridderbusch; Bernd Ozygus


Archive | 2009

LASER IGNITION DEVICE FOR AN INTERNAL COMBUSTION ENGINE AND OPERATING METHOD THEREFOR

Heiko Ridderbusch


Archive | 2014

Ignition device for internal combustion engine, has laser-active solid body, quality switch, injection and decoupling mirrors of laser device formed as integrated monolithic part, and optical amplifier arranged in series with laser device

Heiko Ridderbusch; Joern Ostrinsky

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