Abstract:
Apparatus, methods, and systems provide focusing, focus-adjusting, and sensing. In some approaches the focus-adjusting includes providing an extended depth of focus greater than a nominal depth of focus. In some approaches the focus-adjusting includes focus-adjusting with a transformation medium, where the transformation medium may include an artificially-structured material such as a metamaterial.
Abstract:
Apparatus, methods, and systems provide emitting and negatively-refractive focusing of electromagnetic energy. In some approaches the negatively-refractive focusing includes negatively-refractive focusing from an interior field region with an axial magnification substantially greater than one. In some approaches the negatively-refractive focusing includes negatively-refractive focusing with a transformation medium, where the transformation medium may include an artificially-structured material such as a metamaterial.
Abstract:
Apparatus, methods, and systems provide emitting and negatively-refractive focusing of electromagnetic energy. In some approaches the negatively-refractive focusing includes negatively-refractive focusing from an interior field region with an axial magnification substantially less than one. In some approaches the negatively-refractive focusing includes negatively-refractive focusing with a transformation medium, where the transformation medium may include an artificially-structured material such as a metamaterial.
Abstract:
Systems and methods for modifying a color image of a scene are provided. The systems and methods involve illuminating at least a portion of the scene with a light having a known spectral power distribution, and detecting a finite number of spectral components of light received from the scene under such illumination. The detected values of spectral components of light received from the scene are used to modify the color image or rendition of the scene.
Abstract:
Systems, devices, methods, and compositions are described for providing an actively-controllable disinfecting implantable device configured to, for example, treat or prevent an infection in a biological subject.
Abstract:
A computationally implemented method includes, but is not limited to: intercepting communiqué aspect data that is directed to an end user entity and that indicates one or more aspects of a communiqué directed to the end user entity and that is affiliated with a particular source entity, the intercepting of the communiqué aspect data being in accordance with one or more conditional directives of the end user entity to conditionally obfuscate the communiqué affiliated with the source entity; and transmitting to the end user entity, in response to intercepting the communiqué aspect data and in lieu of transmitting direct indication of the communiqué to the end user entity, covert indicator data that upon reception by the end user entity covertly indicates the one or more aspects of the communiqué. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present disclosure.
Abstract:
Apparatus, methods, and systems provide negatively-refractive focusing and sensing of electromagnetic energy. In some approaches the negatively-refractive focusing includes providing an interior focusing region with an axial magnification substantially less than one. In some approaches the negatively-refractive focusing includes negatively-refractive focusing with a transformation medium, where the transformation medium may include an artificially-structured material such as a metamaterial.
Abstract:
A device, method, computer program product, and network subsystem are described for obtaining a node identifier dependent on at least a position index and a loading indicator of a mobile node and routing data through the mobile node responsive to the node identifier.