Three-dimensional-mapping two-dimensional-scanning lidar based on one-dimensional-steering optical phased arrays and method of using same
A plurality of one-dimensional planar beam forming and steering optical phased array chips form a two-dimensional-scanning solid-state lidar, enabling manufacturing of three-dimensional mapping time-of-flight lidars at high yield and low cost resulting from the simplicity of said one-dimensional optical phased array chips.
1. An apparatus, comprising:
an emitter array of one-dimensional planar beam forming and steering optical phased array photonic integrated circuit chips in a first vertical dimension, each photonic integrated circuit chip emitting optical phase controlled unmodulated pulses of coherent light waves that interfere with each other to form an optical beam pointed in a plurality of directions in a second dimension perpendicular to the first vertical dimension; and
a receiver array to collect reflected pulses indicative of the distance and the reflectivity of a sensed object, the distance of the sensed object establishing a third dimension.
2. The apparatus of claim 1 further comprising at least one off-chip lens.
3. The apparatus of claim 2 wherein the off-chip lens is selected from a refractive lens, a graded index lens, a diffractive optical element and a holographic optical element.
4. The apparatus of claim 1 further comprising at least one on-chip grating.
5. The apparatus of claim 1 wherein the unmodulated pulses of coherent light waves are generated from a single laser.
6. The apparatus of claim 1 wherein the unmodulated pulses of coherent light waves are generated by a plurality of lasers, with the optical input into each photonic integrated circuit chip being generated from one of the plurality of lasers.