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1100 Series FD Reference Manual
7
Introduction to the Fluorescence Detector
When a more complex molecule transforms from its ground energy state into
an excited state, the absorbed energy is distributed into various vibrational
and rotational sub-levels. When this, same molecule returns to the ground
state, this vibrational and rotational energy is first lost by relaxation without
any radiation. Then the molecule transforms from this energy level to one of
the vibrational and rotational sub-levels of its ground state, emitting light, see
. The characteristic maxima of absorption for a substance is its
λ
EX
,
and for emission its
λ
EM
.
Photoluminescence is the collective name for two phenomena,
fluorescenc
e
and
phosphorescence
, which differ from each other in one characteristic
way--the delay of emission after excitation. If a molecule emits light 10
-9
to
10
-5
seconds after it was illuminated then the process was fluorescence. If a
molecule emits light longer than 10
-3
seconds after illumination then the
process was phosphorescence.
Figure 74
Relationship of Excitation and Emission Wavelengths
Summary of Contents for 1100 Series
Page 1: ...s1 Agilent 1100 Series Fluorescence Detector Reference Manual Agilent G1321A Asset 304025 ...
Page 12: ...12 1100 Series FD Reference Manual ...
Page 58: ...60 1100 Series FD Reference Manual 2 First Steps with the Fluorescence Detector ...
Page 126: ...128 1100 Series FD Reference Manual 4 Troubleshooting and Test Functions ...
Page 260: ...262 1100 Series FD Reference Manual 7 Introduction to the Fluorescence Detector ...
Page 324: ...326 1100 Series FD Reference Manual 9 Introduction to the Control Module ...
Page 340: ...342 1100 Series FD Reference Manual A Safety Information ...
Page 345: ......