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LT-APO objective ranges
chromatic focal shift & wavelength ranges of typical emitters
LT -APO/TR/0.81
3 µm
LT -APO/VIO/0.81
LT -APO/VIS/0.82
LT -APO/UV-A/0.81
LT -APO/NIR/0.81
LT -APO/VISIR/0.82
2 µm
1 µm
‚apochromatic‘ working range:
• chromatic focal shift smaller
+/- depth of focus
• uniform spot size
• intensity of emitters
within 75-100%
focal plane
+/- depth of field
0 µm
300 nm
2-dim. structures
400 nm
nm
500 nm
nm
400
500
Wavelength (nm)
600 nm
nm
600
700 nm
800 nm
900 nm
1000 nm
1100 nm
1200 nm
1300 nm
1400 nm
MoS 2 @ 3 K
2D van der Waals heterostructures
1
MoS 2 / WS 2
MoSe 2 / WSe 2
2
semiconducting quantum wells (II-VI & III-V, e.g. GaAs, CdSe, InGaAs,..)
1-dim. structures
ensemble of functionalized nanotubes
3
CNT @ 25 K
carbon nanotubes
covalently functionalized nanotubes
4
semiconducting nanowires (II-VI & III-V)
5
Image sources:
http://en.wikipedia.org/wiki/Chalcogenide
http://en.wikipedia.org/wiki/Quantum_dot
http://en.wikipedia.org/wiki/Kohlenstoffnanor%C3%B6hre
4
http://en.wikipedia.org/wiki/Vapor–liquid–solid_method
5
http://xqp.physik.uni-muenchen.de/research/single_photon/index.html
6
http://de.wikipedia.org/wiki/Quantenpunkt
1
NV center @ 300 K
2
3
6
NV centers, single molecules
0-dim. structures
semiconductor & colloidal quantum dots (II-VI & III-V, e.g. GaAs, InGaAs,...)
dyes (e.g. Cy3, Cy5, Atto600-700,...)
300 nm
400 nm
nm
400
500 nm
nm
500
600 nm
nm
600
700 nm
800 nm
900 nm
1000 nm
1100 nm
1200 nm
1300 nm
1400 nm
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