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CONFIGURABLE OPTICAL DEVICE (Machine-translation by Google Translate, not legally binding)CM Patents

Índice de la ficha

Updated at
24/07/2026
Numero publicacion
EP.3851911.A1
Fecha publicacion
21/07/2021
Numero solicitud
EP20190859981

En detalle

Resumen

Configurable optical device comprising an optical element (1), or several optical elements (1) arranged in cascade, where each optical element (1) comprises an active zone (2) consisting of an input surface and an output surface for beams light, and a perimeter (3). Each optical element (1) comprises at least a first transparent electrode (4) and at least one transparent counter-electrode (5) whose electrical connections are located in the area of the perimeter (3). The device is configured so that, by applying a potential difference between the electrodes (4, 5) of each optical element (1), an electric field is generated that varies the degree of commutation in different areas of the active zone (2) of each optical element (1), thus generating an optical path variation profile of each of the optical elements (1) of the device, which allows focusing an incident light beam in different ways, depending on the electric field applied to each of the electrodes. (Machine-translation by Google Translate, not legally binding)

Reivindicaciones

1. A configurable optical device, characterised in that it comprises a configurable optical element (1) with an active region (2) consisting of an entry surface (21) and an exit surface (22) for light beams and a perimeter region (3), wherein the optical element (1) comprises at least one first transparent electrode (4) divided into sections (41) and at least one transparent counter electrode (5), wherein the optical element (1) has electrical connections for the electrodes (4, 5) and/or sections (41), said electrical connections being located in the perimeter region (3) of the optical element (1), wherein the device is configured so that, upon application of potential differences between each section (41) of the first electrode (4) and the counter electrode (5), electric fields are generated that selectively alter the degree of commutation of the optical element (1) respectively in regions corresponding to the sections (41) of the first electrode (4), thus creating an optical path profile, which configures a certain topological charge and a certain focus of an incident light beam, according to the pattern of electric fields applied to the sections (41) of the first electrode (4), wherein the device is configured so that upon application of a first suitable pattern of electric fields, the optical path profile of the optical element (1) corresponds to that of a spiral diffractive lens with a first focal length and a first topological charge, and so that upon application of a second suitable pattern of electric fields, the optical path profile of the optical element (1) corresponds to that of a spiral diffractive lens with a second focal length and a second topological charge, wherein the counter electrode (5) is also divided into sections, and consequently both electrodes (4, 5) are configured both to have different electrical potentials in each section and to have equal electrical potentials in each section, and wherein the section distribution of the first electrode (4) is different from the section distribution of the counter electrode (5), thus allowing the device to be reconfigured in order to create two independent sets of optical path profiles, which changes the topological charge and the focus of an incident light beam in different ways. 2. The configurable optical device according to claim 1, characterised in that it comprises a first optical element (1) and a second optical element (1) placed in series with the first optical element (1), wherein the first optical element (1) has the counter electrode (5) thereof not divided into sections, and wherein the second optical element (1) has the counter electrode (5) thereof divided into sections. 3. The configurable optical device according to claim 1, characterised in that it comprises two optical elements (1) placed in series. 4. The configurable optical device according to claim 1, characterised in that it comprises two optical elements (1) placed in series. 5. The configurable optical device according to any of the preceding claims, characterised in that the commutation material in one or more of the optical elements (1) is a liquid crystal. 6. The configurable optical device according to any of the preceding claims, characterised in that the commutation material in one or more of the optical elements (1) is a polymerisable liquid crystal. 7. The configurable optical device according to any of claims 2 to 6, characterised in that it is configured so that, upon application of the corresponding electric fields, the optical path profile of the adjacent optical elements (1) placed in series corresponds to that of spiral diffractive lenses. 8. The reconfigurable optical device according to any of claims 2 to 6, characterised in that it is configured so that, upon application of the corresponding electric fields, the optical path profile of the adjacent optical elements (1) placed in series corresponds to that of spiral phase plates. 9. The configurable optical device according to any of claims 2 to 6, characterised in that it is configured so that, upon application of the corresponding electric fields, the optical path profile of at least one of the adjacent optical elements (1) placed in series corresponds to that of a spiral diffractive lens and that the profile of at least one of the remaining adjacent optical elements (1) placed in series corresponds to that of a spiral phase plate. 10. The configurable optical device according to claim 7, characterised in that two spiral diffractive lenses are positioned in series, with a certain gap between them, so that the focal lengths of both lenses coincide, which allows them to function as a tunable telescope or beam expander, altering the topological charge and focus of the lenses, applying the suitable patterns of electric fields to the sections of the electrodes of the optical elements. 11. The configurable device according to any of the preceding claims, characterised in that one of the electrodes (4, 5) includes structures with electromagnetic resonance frequencies which are variable depending on the commutation state of the adjacent liquid crystal. 12. A method for manufacturing a configurable optical device, characterised in that it comprises: - arranging at least two optical elements (1), according to claims 1 and/or 2, arranged in series; - applying a pattern of potential differences between the sections (41) of the first electrode (4) and the counter electrode (5) of each optical element (1), thus producing an electric field that alters the commutation profile and consequently, the optical path profile of the optical element (1), which changes the topological charge of an incident light beam. 13. The method for manufacturing a configurable optical device according to claim 12, characterised in that the optical elements (1) use liquid crystal as electro-optical material. 14. The method for manufacturing a configurable optical device according to claim 13, characterised in that the optical elements (1) use polymerisable liquid crystal as electro-optical material and wherein the method comprises curing the polymerisable liquid crystal, obtaining a diffractive device with a variation profile having a fixed or partially tunable phase. 15. The method for manufacturing a configurable optical device according to any of claims 12 to 14, characterised in that it comprises applying an electric field between the electrodes (4, 5) of two adjacent optical elements (1) placed in series creating a commutation profile of the two adjacent optical elements (1) corresponding to that of two spiral diffractive lenses. 16. The method for manufacturing a configurable optical device according to claim 15, characterised in that it comprises positioning both spiral diffractive lenses in series, with a certain gap between them, so that the focal lengths of both lenses coincide, which allows them to function as a tunable telescope or beam expander, altering the topological charge of the lenses.

Etiquetas

Inventores
Geday Morten AndreasCaño Garcia ManuelOton Sanchez Jose ManuelQuintana Arregui Patxi XabierGeday Jacob AndreasCano Garcia Manuelモルテン・アンドレアス・ゲダイマヌエル・カニョ・ガルシアホセ・マヌエル・オトン・サンチェスパチ・シャビエル・キンタナ・アレギヤコブ・アンドレアス・ゲダイ제다이 모텐 안드레아스카뇨 가르시아 마누엘오톤 산체스 호세 마누엘퀸타나 아레기 파치 하비에르제다이 제이콥 안드레아스
Solicitantes
Universidad Politécnica de Madrid우니베르시다드 폴리테크니카 데 마드리드
Clasificacion ipc
G02B 26/ 06 A IG02B 26/ 08 A IG02B 27/ 09 A IG02B 3/ 08 A IG02B 3/ 14 A IG02B 5/ 18 A IG02F 1/ 01 A IG02F 1/ 1343 A IG02F 1/ 13 A IG02F 1/ 29 A I
Clasificacion cpc
2H088/EA452H088/GA022H088/HA012H088/HA022H088/HA032H088/KA262K102/AA212K102/BA052K102/BA102K102/BB042K102/BB082K102/BC042K102/DC072K102/DD022K102/EA022K102/EA19G02F1/13&505G02F1/29
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