Er-doped light emitting slot waveguides monolithically integrated in a silicon photonic chip

被引:32
作者
Ramirez, J. M. [1 ]
Ferrarese Lupi, F. [1 ]
Berencen, Y. [1 ]
Anopchenko, A. [2 ]
Colonna, J. P. [3 ]
Jambois, O. [1 ]
Fedeli, J. M. [3 ]
Pavesi, L. [2 ]
Prtljaga, N. [2 ]
Rivallin, P. [3 ]
Tengattini, A. [2 ]
Navarro-Urrios, D. [4 ]
Garrido, B. [1 ]
机构
[1] Univ Barcelona, Dept Elect, MIND IN2UB, E-08028 Barcelona, Spain
[2] Univ Trento, Dept Phys, Nanosci Lab, I-38123 Povo, Italy
[3] CEA, Leti, F-38054 Grenoble 9, France
[4] Catalan Inst Nanotechnol CIN2 CSIC, E-08193 Barcelona, Spain
关键词
POLYCRYSTALLINE SILICON; SI; ELECTROLUMINESCENCE; SIO2-FILMS; TRANSPORT; EMISSION;
D O I
10.1088/0957-4484/24/11/115202
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
An integrated erbium-based light emitting diode has been realized in a waveguide configuration allowing 1.54 mu m light signal routing in silicon photonic circuits. This injection device is based on an asymmetric horizontal slot waveguide where the active slot material is Er3+ in SiO2 or Er3+ in Si-rich oxide. The active horizontal slot waveguide allows optical confinement, guiding and lateral extraction of the light for on-chip distribution. Light is then coupled through a taper section to a passive Si waveguide terminated by a grating which extracts (or inserts) the light signal for measuring purposes. We measured an optical power density in the range of tens of mu W/cm(2) which follows a super-linear dependence on injected current density. When the device is biased at high current density, upon a voltage pulse (pump signal), free-carrier and space charge absorption losses become large, attenuating a probe signal by more than 60 dB/cm and thus behaving conceptually as an electro-optical modulator. The integrated device reported here is the first example, still to be optimized, of a fundamental block to realize an integrated silicon photonic circuit with monolithic integration of the light emitter.
引用
收藏
页数:8
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