Claims
- 1. An apparatus for generating a strong source of doubly or multiply entangled photons emitted non-colinearly or colinearly with respect to the pump light at frequency 2 f, wherein a parametric process, or a set of simultaneous parametric processes, are used to generate the entangled photons at frequencies around f, comprising: at least one optical cavity resonant at frequency 2 f surrounding the medium for entangled photon generation, and consisting of at least two mirrors that are highly reflective at the light frequency 2 f.
- 2. An apparatus according to claim 1, for generating a strong source of doubly or multiply entangled photons emitted non-colinearly with respect to the pump light wherein a parametric process or a set of simultaneous parametric processes, in conjunction with a laser medium and nonlinear optical processes are used, comprising: a laser medium producing laser light at fundamental frequency f, a medium for second harmonic generation transforming said light at fundamental frequency f to its second-harmonic frequency 2 f, and emitting entangled photons non-colinearly with respect to the light at the second harmonic frequency, wherein an optical cavity around the laser medium and the medium for second harmonic generation consists of at least two mirrors that are highly reflective at light frequencies f and 2 f.
- 3. An apparatus according to claim 1, for generating a strong source of doubly or multiply entangled photons emitted colinearly with respect to the pump light wherein a parametric process or a set of simultaneous parametric processes, in conjunction with a laser medium and nonlinear optical processes are used, comprising: a laser medium producing laser light at fundamental frequency f, a medium for second harmonic generation transforming the light at fundamental frequency f to its second-harmonic frequency 2 f, an optical element that is placed between the laser medium and the medium for second harmonic generation to spatially separate the 2 f and f light frequencies, wherein one optical cavity is resonant at frequency f around the laser medium and the medium for second harmonic generation and consists of at least two mirrors that are highly reflective at the light frequency f. At least one mirror of this cavity is also highly reflective at light frequency 2 f such that a second optical cavity, formed by said mirror and another mirror that is highly reflective at frequency 2 f, is resonant at frequency 2 f and includes the medium for second harmonic generation, the medium for the generation of entangled photons, and the optical element for spatially separating the light at frequencies 2 f and f. Said second mirror can be highly reflective for frequencies around f in which case the entangled photons leave the cavity only via the optical element for angularly separating the light at frequencies 2 f and f, or said second mirror can be highly transmissive for frequencies around f, in which case the entangled photons can also leave the cavity directly via said second mirror. In order to direct all entangled photons through said second mirror, the entangled photons exiting the cavity via the optical element for spatially separating the light frequencies can be back reflected into the optical cavity by an additional mirror that is highly reflective for frequencies around f.
- 4. An apparatus according to claim 1, for generating a strong source of doubly or multiply entangled photons emitted non-colinearly with respect to the pump light wherein a parametric process or a set of simultaneous parametric processes and nonlinear optical processes are used, comprising: a medium for second harmonic generation transforming the light at fundamental frequency to its second-harmonic frequency 2 f and emitting entangled photons non-colinearly with respect to the light at the second harmonic frequency, wherein an optical cavity is resonant at frequency 2 f around the medium for second harmonic generation, and consists of at least two mirrors which are highly reflective at the light frequency 2 f. The cavity is pumped externally with a laser or classical light source at frequency f through a mirror of the optical cavity with a high transmittance at frequency f or is reflected into the cavity by an intracavity optical element that is highly reflective for frequency f and highly transmissive for frequency 2 f.
- 5. An apparatus according to claim 1, for generating a strong source of doubly or multiply entangled photons emitted colinearly with respect to the pump light wherein a parametric process or a set of simultaneous parametric processes, and nonlinear optical processes are used, comprising: a medium for second harmonic generation transforming the light at fundamental frequency f to its second-harmonic frequency 2 f, a medium for entangled photon generation, and an optical element, placed between the medium for entangled photon generation and the medium for second harmonic generation, which separates the 2 f and the f light frequency into different directions. These elements are contained within an optical cavity, formed by at least 2 mirrors, that is resonant at frequency 2 f and is pumped by a laser light source at light frequency f via said optical element.
- 6. An apparatus according to claim 1, for generating a strong source of doubly or multiply entangled photons emitted non-colinearly with respect to the pump light wherein a parametric process or a set of simultaneous parametric processes and laser-type action are used, comprising: a laser medium producing laser light at fundamental frequency 2 f, a medium for entangled photon generation emitting entangled photons non-colinearly with respect to the laser light at the frequency 2 f, and an optical cavity resonant at frequency 2 f around the medium for entangled photon generation and the laser medium. The optical cavity consists of at least two mirrors that are highly reflective at the light frequency 2 f and at least one mirror that is highly transmissive at frequencies around f.
- 7. An apparatus according to claim 1, for generating a strong source of doubly or multiply entangled photons emitted colinearly with respect to the pump light wherein a parametric process or a set of simultaneous parametric processes, and laser-type action are used, comprising: a laser medium producing laser light at frequency 2 f, a medium for entangled photon generation emitting entangled photons colinearly with respect to the laser light at frequency 2 f, and an optical cavity, formed by at least 2 mirrors, that is resonant at frequency 2 f around the medium for the generation of entangled photons and the laser medium. The entangled photons are coupled out of the cavity through a cavity mirror with a high transmittance for frequencies around f or by an optical element placed inside the optical cavity that spatially directs the light of frequencies around f out of the cavity.
- 8. An apparatus according to one of the preceding claims, wherein the pump light source is a pulsed light source.
- 9. An apparatus according to one of the preceding claims, wherein the pump light source is a continuous light source.
- 10. An apparatus according to one of the preceding claims, wherein dichroic and/or polarization-sensitive optics are used in optical cavities.
- 11. An apparatus according to one of the preceding claims, wherein optical fibers or waveguides are used for the transport and/or processing of light.
- 12. An apparatus according to one of the preceding claims, wherein the medium for entangled photon generation is a nonlinear optical crystal.
- 13. An apparatus according to one of the preceding claims, wherein the medium for entangled photon generation is a parametric downconversion crystal (PDC).
- 14. An apparatus according to one of the preceding claims, wherein the medium for entangled photon generation is a poled nonlinear medium.
- 15. An apparatus according to one of the preceding claims, wherein the parametric process, or set of simultaneous parametric processes, are of type-I, type-II, or any combination thereof.
- 16. An apparatus according to one of the preceding claims, wherein the parametric process, or set of simultaneous parametric processes, are used to generate the entangled photons degenerately at frequencies around f.
- 17. An apparatus according to one of the preceding claims, wherein the parametric process, or set of simultaneous parametric processes, are used to generate the entangled photons non-degenerately at frequencies around f.
- 18. An apparatus according to one of the preceding claims, wherein dichroic mirrors are used which have high reflectance (HR) and/or high transmittance (HT) at or around f and/or at 2 f.
- 19. An apparatus according to one of the preceding claims, with at least one optical element for angularly separating different light frequencies.
- 20. An apparatus according to claim 19, wherein the optical element for angular separation consists of at least one dichroic mirror, one prism, and/or one grating.
PRIORITY INFORMATION
[0001] This application claims priority from provisional application Ser. No. 60/250,175 filed Nov. 30, 2000.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60250175 |
Nov 2000 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
PCT/US01/44889 |
Nov 2001 |
US |
Child |
10443262 |
May 2003 |
US |