Electromagnetically induced transparency and slow light with optomechanics AH Safavi-Naeini, TPM Alegre, J Chan, M Eichenfield, M Winger, Q Lin, ... Nature 472 (7341), 69-73, 2011 | 1530 | 2011 |
Optomechanical crystals M Eichenfield, J Chan, RM Camacho, KJ Vahala, O Painter nature 462 (7269), 78-82, 2009 | 1266 | 2009 |
A picogram-and nanometre-scale photonic-crystal optomechanical cavity M Eichenfield, R Camacho, J Chan, KJ Vahala, O Painter nature 459 (7246), 550-555, 2009 | 850 | 2009 |
Coherent mixing of mechanical excitations in nano-optomechanical structures Q Lin, J Rosenberg, D Chang, R Camacho, M Eichenfield, KJ Vahala, ... Nature Photonics 4 (4), 236-242, 2010 | 315 | 2010 |
Titania-doped tantala/silica coatings for gravitational-wave detection GM Harry, MR Abernathy, AE Becerra-Toledo, H Armandula, E Black, ... Classical and Quantum Gravity 24 (2), 405, 2006 | 307 | 2006 |
Actuation of micro-optomechanical systems via cavity-enhanced optical dipole forces M Eichenfield, CP Michael, R Perahia, O Painter Nature Photonics 1 (7), 416-422, 2007 | 281 | 2007 |
A high electromechanical coupling coefficient SH0 Lamb wave lithium niobate micromechanical resonator and a method for fabrication RH Olsson III, K Hattar, SJ Homeijer, M Wiwi, M Eichenfield, DW Branch, ... Sensors and Actuators A: Physical 209, 183-190, 2014 | 260 | 2014 |
Optical and mechanical design of a “zipper” photonic crystal optomechanical cavity J Chan, M Eichenfield, R Camacho, O Painter Optics Express 17 (5), 3802-3817, 2009 | 196 | 2009 |
High-speed programmable photonic circuits in a cryogenically compatible, visible–near-infrared 200 mm CMOS architecture M Dong, G Clark, AJ Leenheer, M Zimmermann, D Dominguez, ... Nature Photonics 16 (1), 59-65, 2022 | 138 | 2022 |
Modeling dispersive coupling and losses of localized optical and mechanical modes in optomechanical crystals M Eichenfield, J Chan, AH Safavi-Naeini, KJ Vahala, O Painter Optics express 17 (22), 20078-20098, 2009 | 115 | 2009 |
CMOS-compatible, piezo-optomechanically tunable photonics for visible wavelengths and cryogenic temperatures PR Stanfield, AJ Leenheer, CP Michael, R Sims, M Eichenfield Optics express 27 (20), 28588-28605, 2019 | 95 | 2019 |
Towards single-chip radiofrequency signal processing via acoustoelectric electron–phonon interactions L Hackett, M Miller, F Brimigion, D Dominguez, G Peake, A Tauke-Pedretti, ... Nature Communications 12 (1), 2769, 2021 | 42 | 2021 |
Characterization of radiation pressure and thermal effects in a nanoscale optomechanical cavity RM Camacho, J Chan, M Eichenfield, O Painter Optics Express 17 (18), 15726-15735, 2009 | 37 | 2009 |
A phononic interface between a superconducting quantum processor and quantum networked spin memories T Neuman, M Eichenfield, ME Trusheim, L Hackett, P Narang, D Englund npj Quantum Information 7 (1), 1-8, 2021 | 30 | 2021 |
High-gain leaky surface acoustic wave amplifier in epitaxial InGaAs on lithium niobate heterostructure L Hackett, A Siddiqui, D Dominguez, JK Douglas, A Tauke-Pedretti, ... Applied Physics Letters 114 (25), 2019 | 28 | 2019 |
Lamb wave focusing transducer for efficient coupling to wavelength-scale structures in thin piezoelectric films A Siddiqui, RH Olsson, M Eichenfield Journal of Microelectromechanical Systems 27 (6), 1054-1070, 2018 | 28 | 2018 |
A phononic bus for coherent interfaces between a superconducting quantum processor, spin memory, and photonic quantum networks T Neuman, M Eichenfield, M Trusheim, L Hackett, P Narang, D Englund arXiv preprint arXiv:2003.08383, 2020 | 26 | 2020 |
Efficient second harmonic generation in lithium niobate on insulator J Moore, JK Douglas, IW Frank, TA Friedmann, RM Camacho, ... 2016 Conference on Lasers and Electro-Optics (CLEO), 1-2, 2016 | 23 | 2016 |
Piezo-optomechanical cantilever modulators for VLSI visible photonics M Dong, D Heim, A Witte, G Clark, AJ Leenheer, D Dominguez, ... APL Photonics 7 (5), 2022 | 21 | 2022 |
Optomechanical force sensors, cantilevers, and systems thereof EA Douglas, M Eichenfield, A Jones, R Camacho, MD Henry, JK Douglas US Patent 10,031,158, 2018 | 21 | 2018 |