Claims
- 1. A polarization-independent four-port coupler comprising:
- a pair of asynchronous optical waveguides in coupling proximity and
- a coupling grating distributed along one of said waveguides wherein:
- said grating has a double periodicity .LAMBDA..sub.1 and .LAMBDA..sub.-1 such that at an operating wavelength .lambda..sub.op
- .lambda..sub.op =.LAMBDA..sub.1 (n.sub.2(TM) -n.sub.1(TM))
- and
- .lambda..sub.op =.LAMBDA..sub.-1 (n.sub.2(TE) -n.sub.1(TE));
- where:
- n.sub.2(TE) and n.sub.2(TM) are the refractive indices at wavelength .lambda..sub.op of one of said waveguides to the TE and TM modes respectively; and
- n.sub.1(TE) and n.sub.1(TM) are the refractive indices at wavelength .lambda..sub.op of the other of said waveguides to the TE and TM modes respectively.
- 2. A polarization-independent coupler as in claim 1 wherein said grating comprises:
- a plurality of grating sections, each having a uniform periodicity .LAMBDA., separated by phase shifts .LAMBDA./2, where 2/.LAMBDA.=1/.LAMBDA..sub.1 +1/.LAMBDA..sub.-1, and wherein:
- said phase shifts occur at intervals equal to M.LAMBDA./2 where
- M.LAMBDA.=2/(1/.LAMBDA..sub.-1 -1/.LAMBDA..sub.1)
- and M is any number greater than one.
- 3. A polarization-independent four-port coupler comprising:
- a pair of asynchronous optical waveguides in coupling proximity; and
- a reflective grating distributed along one of said waveguides; wherein:
- said grating has a double periodicity .LAMBDA..sub.1 and .LAMBDA..sub.-1 such that at an operating wavelength .lambda..sub.op
- .lambda..sub.op =.LAMBDA..sub.1 (n.sub.2(TM) +n.sub.1(TM))
- and
- .lambda..sub.op =.LAMBDA..sub.-1 (n.sub.2(TE) +n.sub.1(TE));
- where:
- n.sub.2(TE) and n.sub.2(TM) are the refractive indices at wavelength .lambda..sub.op of one of said waveguides to the TE and TM modes respectively; and
- n.sub.1(TE) and n.sub.1(TM) are the refractive indices at wavelength .lambda..sub.op of the other of said waveguides to the TE and TM modes respectively.
- 4. A polarization-independent coupler as in claim 3 wherein said grating comprises:
- a plurality of grating sections, each having a uniform periodicity .LAMBDA., separated by phase shifts .LAMBDA./2, where 2/.LAMBDA.=1/.LAMBDA..sub.1 +1/.LAMBDA..sub.-1,
- and wherein:
- said phase shifts occur at intervals equal to M.LAMBDA./2 where
- M/.LAMBDA.=2/(1/.LAMBDA..sub.-1 -1/.LAMBDA..sub.1)
- and M is any number greater than one.
- 5. A polarization-independent two-port filter comprising:
- an optical waveguide in guiding proximity; and
- a grating distributed along said waveguide, wherein:
- said grating has a double periodicity .LAMBDA..sub.1 and .LAMBDA..sub.-1 such that at an operating wavelength .lambda..sub.op
- .lambda..sub.op =.LAMBDA..sub.1 2n.sub.(TM)
- and
- .lambda..sub.op =.LAMBDA..sub.-1 2n.sub.(TE)
- where:
- n.sub.(TE) and n.sub.(TM) are the refractive indices at wavelength .lambda..sub.op of said waveguide to the TE and TM modes respectively.
- 6. A polarization-independent coupler as in claim 5 wherein said grating comprises:
- a plurality of grating sections, each having a uniform periodicity .LAMBDA., separated by phase shifts .LAMBDA./2, where 2/.LAMBDA.=1/.LAMBDA..sub.1 +1/.LAMBDA..sub.-1, and wherein:
- said phase shifts occur at intervals equal to M.LAMBDA./2 where
- M.LAMBDA.=2/(1/.LAMBDA..sub.-1 -1/.LAMBDA..sub.1).
- and M is any number greater than one.
Parent Case Info
This application is a Continuation-in-Part of my earlier filed application Ser. No. 08/120,19, filed Sep. 10, 1993.
US Referenced Citations (8)
Non-Patent Literature Citations (2)
Entry |
"Grating-assisted InGaAsP/InP vertical codirectional coupler filter" by R. C. Alferness et al., 6 Nov. 1989, Appl. Phys. Lett. 55(19) pp. 2011-2013. |
"Vertically coupled InGaAsP/InP buried rib waveguide filter" by R. C. Alferness, 11 Nov. 1991, Appl. Phys. Lett. 59 (20), pp. 2573-2575. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
120119 |
Sep 1993 |
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