LLNL has developed a method of extending device lifetimes by imprinting into the device a shape that excludes specific vibrational modes, otherwise known as a phononic bandgap. Eliminating these modes prevents one of the primary energy loss pathways in these devices. LLNL’s new method enhances the coherence of superconducting circuits by introducing a phononic bandgap around the system’s…
Keywords
- (-) Show all (80)
- Imaging Systems (9)
- Photoconductive Semiconductor Switches (PCSS) (9)
- Substrate Engraved Meta-Surface (SEMS) (7)
- Semiconductors (6)
- Compact Space Telescopes (5)
- Optical Switches (5)
- Diode Lasers (4)
- Laser Materials Processing (4)
- Precision Optical Finishing (4)
- Additive Manufacturing (3)
- Optical Damage Mitigation (3)
- Power Electronics (3)
- RF Photonics (3)
- Sensors (3)
- Additively Manufactured (AM) Optics (2)
- Computing (2)
- Electric Grid (2)
- Fiber Lasers (2)
- Particle Accelerators (2)
- Ultrashort Pulse Lasers (2)