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| = Second Harmonic Generation = | <<TableOfContents([2])>> = Frequency doubling Crystal = . A PPKTP crystal is used as an frequency-doubling crystal = Conversion Efficiencies = == Measured Efficiencies == || || ''' Incident power at 1064 nm [mW]'''|| ''' output power at 532 nm [mW] '''|| '''Conversion efficiency [%/W] '''|| ''' date'''|| || PSL doubling|| || || || || X end doubling|| || || || || Y end doubling|| || || || == Expected efficiencies == . According to .. = Temperature settings = == Measured response to temperature == == Requirements on the temperature stability == |
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| == Measured Efficiencies == || || ''' Incident beam power at 1064 nm [mW]'''|| ''' output beam at 532 nm [mW] '''|| '''Conversion efficiency [%/W] '''|| || PSL doubling|| || || || || X end doubling|| || || || || Y end doubling|| || || || == Frequency doubling Crystal == == Mounts and Ovens == |
= Mounts and Ovens = |
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== Temperature settings == |
<<TableOfContents: execution failed [Argument "maxdepth" must be an integer value, not "[2]"] (see also the log)>>
Frequency doubling Crystal
- A PPKTP crystal is used as an frequency-doubling crystal
Conversion Efficiencies
Measured Efficiencies
Incident power at 1064 nm [mW]
output power at 532 nm [mW]
Conversion efficiency [%/W]
date
PSL doubling
X end doubling
Y end doubling
Expected efficiencies
- According to ..
Temperature settings
Measured response to temperature
Requirements on the temperature stability
Mounts and Ovens
- In order to have an optimal conversion efficiency the crystals need to be temperature-controlled. Currently we are using an oven from Covision inc.
- [attachment:PV40.pdf drawing of PV40 oven]
- [attachment:PVP2.pdf drawing of the base plate PVP2]
- [attachment:manual_oven.pdf manual for the Covesion oven]
- [attachment:Oven base plate schematic]
