Claims
- 1. A multilayer structure comprising,
a plurality of at least two alternating layers a and b represented by formula (AB)x, where x=2n, and n is in the range of from 4 to 15; wherein layer a is comprised of component (a) and layer B is comprised of component (b); wherein at least one of components (a) and (b) is an organic polymeric material containing a nonlinear dye and exhibiting nonlinear optical response; and wherein said organic polymeric material is selected from the group consisting of polyethylene naphthalate, isomers of polyethylene naphthalate, polyalkylene terephthalates, polyetherimides, a styrenic polymer, a polycarbonate, a poly(meth)acrylate, a cellulose derivative, a polyalkylene polymer, a fluorinated polymer, a chlorinated polymer, a polyethersulfone, polyacrylonitrile, a polyamide, polyvinylacetate, a polyetheramide, a styrene-acrylonitrile copolymer containing between 10 and 50 wt % acrylonitrile, a styrene-ethylene copolymer, poly(ethylene-1,4-cyclohexylenedimethylene terephthalate) and blends thereof.
- 2. The multilayer structure of claim 1, comprising a plurality of at least three alternating layers A, B and C, represented by formula (ABC)x, wherein layer A is comprised of component (a), layer B is comprised of component (b) and layer C is comprised of component (c); and wherein said components (a), (b) and (c) may be the same or different, provided that at least one of the components (a), (b) and (c) exhibits nonlinear optical response:
- 3. The multilayer structure of claim 1, wherein the difference in the refractive index of component (a) and component (b) is in the range of 0 to 10%.
- 4. The multilayer structure of claim 1, wherein components (a) and (b) have a transmission window within the range of about 200 micrometers and about 350 nanometers.
- 5. The multilayer structure of claim 1, wherein at least one of the components (a) and (b) is a polymeric composite material.
- 6. The multilayer structure of claim 1, wherein said nonlinear dye affects change in the refractive index by thermal change.
- 7. The multilayer structure of claim 1, wherein said nonlinear dye affects change in the refractive index by optical pumping.
- 8. The multilayer structure of claim 1, wherein said nonlinear dye is selected from the group consisting of a phthalocyanine, a naphthalocyanine, a porphyrin, an organometallic cluster compound, a fullerene, lead tetrakis(cumylphenoxy)phthalocyanine, lead tetrakis(polydimethylsiloxane) phthalocyanine, tetra-tert-butyl(p-trifluoromethyl phenyl) indium(III), phthalocyanine and bis(trihexylsiloxy)silicon naphthalocyanine.
- 9. The multilayer structure of claim 1, wherein said multilayer structure contains at least 30 layers.
- 10. The multilayer structure of claim 1, wherein the thickness of each layer is in the order of from 5 nanometers and 10 micrometers.
- 11. The multilayer structure of claim 1, which includes a tie layer (T) between layer A and layer B; said multilayer structure represented by formula (ATBT)xA, where x=2n and n is the number of multiplier elements.
- 12. The multilayer structure of claim 1, which includes a barrier layer.
- 13. The multilayer structure of claim 1, which includes a surface layer on at least one major surface thereof
- 14. The multilayer structure of claim 1, wherein said multilayer structure is a film or a sheet.
- 15. The multilayer structure of claim 1, wherein said multilayer structure is an optical limiter.
- 16. The multilayer structure of claim 1, wherein said multilayer structure is an optical switch.
- 17. The multilayer structure of claim 21, wherein the response issue of said optical switch is at least 20 femtosecond.
- 18. A method for forming the multilayer structure of claim 1, comprising
extruding component (a) in an extruder (A) to form a melt stream (A) and component (b) in an extruder (B) to form a melt stream (B); combining melt stream (A) with melt stream (B) in a feedblock to form parallel layers (A) and (B); advancing said parallel layers through a series of multiplying elements (n) to form the multilayer structure.
- 19. A multilayer structure comprising,
a plurality of at least two alternating layers A and B represented by formula (AB)x, where x=2n, and n is in the range of from 4 to 15; wherein layer A is comprised of component (a) and layer B is comprised of component (b); wherein at least one of components (a) and (b) exhibits nonlinear optical response; and wherein said component (a) is an oligomeric material (A) and said component (b) is an oligomeric material (A) containing a nonlinear dye.
- 20. A multilayer structure comprising,
a plurality of at least two alternating layers A and B represented by formula (AB)x, where x=2n, and n is in the range of from 4 to 15; wherein layer A is comprised of component (a) and layer B is comprised of component (b); wherein at least one of components (a) and (b) exhibits nonlinear optical response; and wherein the difference in the refractive index of component (a) and component (b) is 0.
Parent Case Info
[0001] This application is a continuation of application Ser. No. 09/794,492, filed Feb. 28, 2001; application Ser. No. 09/794,492 claims priority to U.S. Provisional patent application Serial No. 60/195,695, filed Apr. 7, 2000, both of which are incorporated herein by reference in their entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60195695 |
Apr 2000 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09794492 |
Feb 2001 |
US |
Child |
10391296 |
Mar 2003 |
US |