US 12,249,665 B2
Methods, systems, and apparatuses for producing, generating and utilizing power and energy
Yttrium Saiyan, Tyler, TX (US); and Mary McInerny, Tyler, TX (US)
Assigned to QUANTUM PHOTONICS CORPORATION, Tyler, TX (US)
Filed by Quantum Photonics Corporation, Tyler, TX (US)
Filed on Feb. 13, 2023, as Appl. No. 18/168,097.
Application 18/168,097 is a continuation of application No. 17/686,520, filed on Mar. 4, 2022, abandoned.
Claims priority of provisional application 63/157,041, filed on Mar. 5, 2021.
Prior Publication US 2023/0197874 A1, Jun. 22, 2023
Int. Cl. H01L 31/054 (2014.01); H01L 31/0216 (2014.01); H01L 31/055 (2014.01)
CPC H01L 31/0547 (2014.12) [H01L 31/02167 (2013.01); H01L 31/02168 (2013.01); H01L 31/055 (2013.01)] 3 Claims
OG exemplary drawing
 
1. A reactor, comprising:
one or more photonic collectors that collect photonic energy and disperse photonic energy;
one or more mirrors which concentrate the photonic energy dispersed by the one or more photonic collectors;
one or more gain mediums which receive, on one or more absorption faces, the photonic energy dispersed by the one or more photonic collectors and the photonic energy concentrated by the one or more mirrors;
a photoelectric material which receives photonic energy from the one or more gain mediums and converts the photonic energy into electrical energy,
wherein each of the one or more gain mediums are coated with a first reflective coating,
wherein the one or more photonic collectors are coated with a second reflective coating that is tuned to allow for certain wavelengths of light to lace back and forth within each of the one or more photonic collectors;
wherein the one or more photonic collectors comprise cylinders and/or pyramids;
wherein the photoelectric material is coated with an index matching coating; and
wherein the one or more gain mediums have a crystalline structure selected from the group consisting of Ti3+: Al2O3, Yb3+: YAG, and Ce: YAG, and a Fano-resonant optical coating (FROC) on the one or more absorption faces of each of the one or more gain mediums, the FROC is configured such that the photonic energy laces back and forth within the one or more gain mediums to produce a photonic energy gain.