Instrument Database
FlexPL

General information
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Investigation area
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TechniquesLow temperature photoluminescence
Raman spectroscopy
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ManufacturerVarious
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Measured quantityPhotoluminescence and Raman signal giving rise to numerous measured quantities (strain, doping concentration, carrier mobility, native and foreign defects, excitons, band-band transitions, etc.)
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Main applicationMeasuring photoluminescence and Raman spectra down to a temperature of 9 K in a He-cryostat or up to 1100 K in a heating stage. Mapping with high spatial resolution is available.
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High-throughtput analysisYes
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Correlated workflow availableYes
Instrument specification
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Technical aspects
The setup has two mapping functions allowing to map the photoluminescence and Raman spectra on a large scale (several centimeters) and a small scale (100 x 100 ?m?, sub-?m steps). Various microscope objective lenses are available for the second mapping option. Furthermore, the entire setup can be adapted to individual needs, giving rise to the name "FlexPL". A multitude of optics (filters, polarizers, waveplates, etc.) can be added to the beam path to ensure best spectroscopic results. High resolution but also overview photoluminescence spectra can be obtained in a spectral range of 360 - 950 nm (CCD and poit-detector detection). Therefore, various excitation sources are available (e.g., 266 nm). Raman spectra can be acquired with a 561 nm or 660 nm laser. The setup is build in a "microscope configuration", allowing for an imaging of most sample surfaces by light microscopy.
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Correlated workflow
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Additional measurement possibilitiesDepending on the outcome of the measurements with the FlexPL system, there is always the possibility to transition towards other spectroscopic equipment of the RG Callsen based on a collaboration.
Contact
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Application scientistJana Lierath
Fachbereich 1
IFP / RG Callsen NW1 W4090
Phone number
lierathprotect me ?!uni-bremenprotect me ?!.de -
Gordon Callsen
Fachbereich 1
IFP / RG Callsen NW1 W4120
Phone number
gcallsenprotect me ?!uni-bremenprotect me ?!.de -
Principal investigatorGordon Callsen
Instrument location
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GroupRG Callsen
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BuildingNW1
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RoomS4101
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FacultyFachbereich 1
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Institute UniversityIFP