Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitions. These emissions are narrow, with long excited state lifetimes and have the capability of spectral manipulation like wavelength shifting, down-conversion or up-conversion processes. Therefore, RE-doped materials are widely used for optical applications. However, the narrow absorption bandwidths and the small excitation cross sections for their optical transitions are major limiting factors for the full exploitation of their potentials. In this work, we show that the addition of metal nanoaggregates as broadband and efficient sensitizers can be a viable strategy to overcome these limits. Silica-zirconia (70% SiO2- 30% ZrO2) glass-ceramic fi...
Rare earth doped materials play a very important role in the development of many photonic\ud devices...
Rare earth doped materials play a very important role in the development of many photonic devices, s...
Various studies report that Tb3+/Yb3+ co-doped materials can split one UV or 488 nm (visible) photon...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
Rare earth doped materials play a very important role in the development of many photonic devices, s...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
Rare earth doped materials play a very important role in the development of many photonic devices, ...
Rare earth doped materials play a very important role in the development of many photonic\ud devices...
Rare earth doped materials play a very important role in the development of many photonic devices, s...
Various studies report that Tb3+/Yb3+ co-doped materials can split one UV or 488 nm (visible) photon...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
Rare earth ions (RE3+) have typical photoluminescence emissions due to internal 4f orbital transitio...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
Rare earth doped materials play a very important role in the development of many photonic devices, s...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
In this paper we report the study of down-shifting silica-zirconia glass and glass-ceramic films dop...
Rare earth doped materials play a very important role in the development of many photonic devices, ...
Rare earth doped materials play a very important role in the development of many photonic\ud devices...
Rare earth doped materials play a very important role in the development of many photonic devices, s...
Various studies report that Tb3+/Yb3+ co-doped materials can split one UV or 488 nm (visible) photon...