Unraveling Thermal Interactions in Lanthanide-Doped Phosphors: A Frequency-Domain Analysis Approach [Dataset]
收藏资源简介:
- Fig1b_emi.txt : PL spectra of SAO:Eu,Dy at 200K: Wavelength in nm (column 1), intensity in detector counts (column 2). - Fig1b_exc.txt : Excitation spectra of SAO:Eu,Dy at 200K: Wavelength in nm (column 1), intensity in detector counts (column 2). - Fig1c_emi.txt : PL spectra of GYAGG:Ce,Cr at 200K: Wavelength in nm (column 1), intensity in detector counts (column 2). - Fig1c_exc.txt : Excitation spectra of GYAGG:Ce,Cr at 200K: Wavelength in nm (column 1), intensity in detector counts (column 2). - Fig1d.txt : PL quenching curves of SAO:Eu,Dy: Temperature in K (column 1), intensity in detector counts for an excitation density of 4mW/cm2 (column 2), intensity in detector counts for an excitation density of 0.04mW/cm2 (column 3). - Fig1e.txt : PL quenching curves of GYAGG:Ce,Cr: Temperature in K (column 1), intensity in detector counts for an excitation density of 4mW/cm2 (column 2), intensity in detector counts for an excitation density of 0.04mW/cm2 (column 3). - Fig2a.txt : Real part of the transfer function (Hr) as a function of temperature for SAO:Eu,Dy: Data is given in a matrix form with the first column corresponding to frequency in Hz and the first row corresponding to temperature in K. - Fig2b.txt : Imaginary part of the transfer function (Hi) as a function of temperature for SAO:Eu,Dy: Data is given in a matrix form with the first column corresponding to frequency in Hz and the first row corresponding to temperature in K. - Fig2d.txt : Real part of the transfer function (Hr) as a function of temperature for GYAGG:Ce,Cr: Data is given in a matrix form with the first column corresponding to frequency in Hz and the first row corresponding to temperature in K. - Fig2e.txt : Imaginary part of the transfer function (Hi) as a function of temperature for GYAGG:Ce,Cr: Data is given in a matrix form with the first column corresponding to frequency in Hz and the first row corresponding to temperature in K. - Fig3a_SAO.txt : Trapping efficiency as a function of temperature for SAO:Eu,Dy: Temperature in K (column 1), trapping efficiency (column 2). - Fig3a_GYAGG.txt : Trapping efficiency as a function of temperature for GYAGG:Ce,Cr: Temperature in K (column 1), trapping efficiency (column 2). - Fig3b_SAO.txt : Trapping rate and total decay rate as a function of temperature for SAO:Eu,Dy: Temperature in K (column 1), trapping rate in Hz (column 2), total decay rate in Hz (column 3). - Fig3b_GYAGG.txt : Trapping rate and total decay rate as a function of temperature for GYAGG:Ce,Cr: Temperature in K (column 1), trapping rate in Hz (column 2), total decay rate in Hz (column 3).



