Aberration correction of optical phased arrays
US-2019235233-A1 · Aug 1, 2019 · US
US10901293B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-10901293-B1 |
| Application number | US-201916730972-A |
| Country | US |
| Kind code | B1 |
| Filing date | Dec 30, 2019 |
| Priority date | Aug 7, 2019 |
| Publication date | Jan 26, 2021 |
| Grant date | Jan 26, 2021 |
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A two-dimensional optical phased array, including a first phased array and a second phased array disposed on the first phased array. The first phased array includes an optical coupler, a beam splitter, a plurality of phase shifters, and a plurality of light-emitting units. The second phased array includes a strip transparent electrode array, a phase shifting medium, and a transparent electrode disposed on the phase shifting medium. The strip transparent electrode array is disposed on the light-emitting units. The phase shifting medium is disposed on the strip transparent electrode array. The light-emitting units is configured to produce a laser beam which is incident to the second phased array via the strip transparent electrode array and emitted via the transparent electrode on the phase shifting medium.
Opening claim text (preview).
What is claimed is: 1. An optical phased array, comprising: a first phased array, the first phased array comprising an optical coupler, a beam splitter, a plurality of phase shifters, and a plurality of light-emitting units; and a second phased array disposed on the first phased array, the second phased array comprising a strip transparent electrode array, a phase shifting medium, and a transparent electrode; wherein: the strip transparent electrode array is disposed on the plurality of light-emitting units of the first phased array; the plurality of light-emitting units is configured to produce a laser beam which is incident to the second phased array via the strip transparent electrode array and emitted via the transparent electrode on the phase shifting medium; and the strip transparent electrode array comprises M strip transparent electrodes where M is an integer; the beam splitter splits the laser beam into N optical waveguides where N is an integer; an m th strip transparent electrode of the M strip transparent electrodes covers all m th light-emitting units on the N optical waveguides of the first phased array; the phase shifting medium is disposed on the strip transparent electrode array; the phase shifting medium is liquid crystal or an electro-optic polymer; and the phase shifting medium is covered by the transparent electrode. 2. The array of claim 1 , wherein the optical coupler is configured to couple an external laser light into the first phased array; each of the N optical waveguides is equipped with an independent phase shifter to control the phase of an optical wave in each of the N optical waveguides; and each optical waveguide comprises M light-emitting units. 3. The array of claim 2 , wherein the external laser light is coupled into the first phased array by the optical coupler through vertical coupling or end-face coupling. 4. The array of claim 3 , wherein the beam splitter is a cascaded multimode interferometer (MMI), a cascaded Y-branch coupler, or a star coupler.
characterised by means for configuring the device, e.g. moveable element for wavelength tuning (switching G02B6/35; thermo-optic devices G02F1/0147) · CPC title
Comprising cascaded AWG devices; AWG multipass configuration; Plural AWG devices integrated on a single chip · CPC title
characterised by the arrayed waveguides, e.g. comprising a filled groove in the array section · CPC title
Simultaneous measurement of distance and other co-ordinates (indirect measurement G01S17/46) · CPC title
relating to scanning · CPC title
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