Title :
Experimental evaluation of the 3-D optical shuffle interconnection module of the sliding Banyan architecture
Author :
Michael, R.R. ; Chistensen, Marc P. ; Haney, Michael W.
Author_Institution :
BDM Federal Inc., Arlington, VA, USA
fDate :
9/1/1996 12:00:00 AM
Abstract :
A free-space optical interconnection module for the sliding Banyan (SB) multistage interconnection network is experimentally evaluated. This three-dimensional (3-D) optical shuffle topology employs a macro-lens array in a reflective architecture. Interconnections for multiple stages are interleaved across a single two-dimensional (2-D) multichip array of “smart pixels”. The experimental module implements five interleaved stages of shuffle interconnections with approximately 10 μm resolution and 10 μm registration accuracy across a 10×10 cm, 256 node, simulated optoelectronic (OE) backplane. The experiments demonstrate the use of conventional refractive optical elements to implement the required shuffle interconnection pattern in a SB network. The results suggest that this reflective 3-D shuffle interconnected SB approach may lead to ATM switching fabrics with aggregate throughputs scaleable to >1 Tb/s. Such a system could be implemented with vertical cavity surface emitting laser (VCSEL) based smart pixel OE technology
Keywords :
integrated optoelectronics; laser cavity resonators; lenses; multiprocessor interconnection networks; optical interconnections; photonic switching systems; semiconductor lasers; smart pixels; surface emitting lasers; μm registration accuracy; μm resolution; 1 Tbit/s; 10 cm; 3D optical shuffle interconnection module; ATM switching fabrics; VCSEL based smart pixel OE technology; aggregate throughputs; free-space optical interconnection module; macro-lens array; multichip array; multistage interconnection network; network switching applications; parallel optical computing; reflective architecture; refractive optical elements; shuffle interconnection pattern; shuffle interconnections; simulated optoelectronic backplane; sliding Banyan architecture; smart pixels; vertical cavity surface emitting laser; Backplanes; Multiprocessor interconnection networks; Network topology; Optical arrays; Optical fiber networks; Optical interconnections; Optical refraction; Stimulated emission; Two dimensional displays; Vertical cavity surface emitting lasers;
Journal_Title :
Lightwave Technology, Journal of