Overlapping facets
Specific management of configuration of overlap of facets reduces non-uniformity in an image outcoupled toward a nominal point of observation. A waveguide including at least two parallel surfaces, first, middle, and last partially reflecting facets are configured such that in a geometrical projection of the facets onto one of the surfaces the facets overlap, preferably with adjacent facets overlapping and non-adjacent facets starts and ends coinciding along at least a portion of the waveguide.
1. A method for producing a light-guide optical element (LOE) comprising:
(a) providing a stack of parallel-faced plates bonded together at interface planes and having partially-reflecting coatings applied at said interface planes;
(b) slicing said stack along a pair of parallel major slicing planes to form a slice, said major slicing planes being non-parallel to said interface planes so that said slice includes parts of a plurality of said interface planes providing internal partially-reflecting facets within said slice;
(c) cutting said slice perpendicular to said major slicing planes to form at least one end surface; and
(d) assembling the LOE by attaching at least one additional block of transparent material to said at least one end surface and sandwiching said slice and said at least one additional block of transparent material between two face plates.
2. The method of claim 1 , wherein said cutting is performed so as to bisect one of said internal partially-reflecting surfaces, thereby forming a half-facet.
3. The method of claim 1 , wherein said cutting is performed so as to form two of said end surfaces, and wherein said assembling is performed by attaching two of said additional blocks of transparent material to said two end surfaces.
4. The method of claim 1 , wherein said slicing is performed by slicing said stack along two perpendicular pairs of parallel major slicing planes to form a rectangular slice, both of said two pairs of major slicing planes being non-parallel to said interface planes, and wherein said end surface is perpendicular to both of said two pairs of major slicing planes.