Multi-wavelength-emitting lens to reduce blending of light over long distances
A lamp for safety signalling is disclosed. The lamp uses quantum dot phosphors to down-convert light from a primary light source and provide red or green light.
1. A lamp, comprising:
a primary light source; and
an optical element comprising:
a lens comprising a patterned plurality of cylindrical wells, each well containing quantum dots (QDs), and
a seal forming an airtight seal of the QDs within the wells,
wherein the patterned plurality of cylindrical wells comprise concentric circles and wherein QDs contained within wells of a first subset of the concentric circles emit light having a different wavelength than light emitted by QDs contained within a second subset of the concentric circles.
2. The lamp of claim 1 , wherein all of the QDs emit light in the red portion of the visible spectrum and wherein the QDs contained within wells of the first subset of the concentric circles emit light having a different wavelength in the red portion of the visible spectrum than the light emitted by the QDs contained within the second subset of the concentric circles.
3. The lamp of claim 1 , wherein all of the QDs emit light in the green portion of the visible spectrum and wherein the QDs contained within wells of the first subset of the concentric circles emit light having a different wavelength in the green portion of the visible spectrum than the light emitted by the QDs contained within the second subset of the concentric circles.
4. The lamp of claim 1 , wherein the primary light source is a blue-emitting or a UV-emitting LED.
5. The lamp of claim 1 , wherein the QDs are contained within a polymer.
6. The lamp of claim 1 , wherein the QDs are contained within polymer beads.
7. An optical element comprising:
a lens comprising a patterned plurality of cylindrical wells, each well containing quantum dots (QDs), and
a seal forming an airtight seal of the QDs within the wells,
wherein the patterned plurality of cylindrical wells comprise concentric circles and wherein QDs contained within wells of a first subset of the concentric circles emit light having a different wavelength than light emitted by QDs contained within a second subset of the concentric circles.