Title : 
Performance of Ar+-milled Ti:sapphire rib waveguides as single transverse-mode broadband fluorescence sources
         
        
            Author : 
Grivas, Christos ; Shepherd, David P. ; Smith, Timothy C May ; Eason, Robert W. ; Pollnau, Markus ; Crunteanu, Aurelian ; Jelinek, Miroslav
         
        
            Author_Institution : 
Optoelectronics Res. Centre, Univ. of Southampton, UK
         
        
        
        
        
            fDate : 
3/1/2003 12:00:00 AM
         
        
        
        
            Abstract : 
Rib waveguides have been fabricated in pulsed-laser-deposited Ti:sapphire layers using photolithographic patterning and subsequent Ar+-beam milling. Fluorescence output powers up to 300 μW have been observed from the ribs following excitation by a 3-W multiline argon laser. Mode intensity profiles show high optical confinement and the measured beam propagation factors Mx2 and My2 of 1.12 and 1.16, respectively, indicate single transverse-mode fluorescence emission. Loss measurements using the self-pumped phase conjugation technique have yielded comparable values (1.7 dB/cm) for the ribs and the unstructured planar waveguide counterparts. The combination of optimum modal properties and strong optical confinement, together with sufficient levels of fluorescence output, make the single-moded Ti:sapphire rib waveguides a very interesting candidate as a fluorescence source for optical coherence tomography applications.
         
        
            Keywords : 
fluorescence; laser applications in medicine; optical films; optical phase conjugation; optical pumping; optical tomography; optical waveguides; rib waveguides; sapphire; solid lasers; titanium; 3 W; 300 muW; Al2O3:Ti; Ar+; Ar+-beam milling; Ar+-milled Ti:sapphire rib waveguides; beam propagation factors; fluorescence output; fluorescence output powers; fluorescence source; high optical confinement; loss measurements; mode intensity profiles; multiline argon laser; optical coherence tomography; optimum modal properties; photolithographic patterning; self-pumped phase conjugation technique; single transverse-mode broadband fluorescence sources; single transverse-mode fluorescence emission; single-moded Ti:sapphire rib waveguides; unstructured planar waveguide counterparts; Argon; Fluorescence; Laser excitation; Laser modes; Milling; Optical pulses; Optical waveguides; Power generation; Ribs; Stimulated emission;
         
        
        
            Journal_Title : 
Quantum Electronics, IEEE Journal of
         
        
        
        
        
            DOI : 
10.1109/JQE.2002.808149