publications
2013
, Demonstration of miniature all-optical photoacoustic spectrometer based on ferrule-top technology, Optics Lett., accepted ,
, Collecting optical coherence elastography depth profiles with a micromachined cantilever probe, Optics Lett., accepted ,
, Measuring precursory acoustic signals in rockfall events by means of optical fiber sensors, Proc. SPIE, accepted ,
, Hydrodynamic force measurements under precisely controlled conditions: correlation of slip parameter with mean free path microscopy, Physics of Fluids 25, 042103
, Towards high speed ferrule-top atomic force microscopy, Proceedings of the 6th IFAC Symposium on Mechatronic Systems , 51
, Demonstration of an optically actuated ferrule-top device for pressure and humidity sensing, Sensors and Act. A190, 77
2012
, Ferrule-top nanoindenter: An optomechanical fiber sensor for nanoindentation, Rev. Sci. Instr. 83, 115110
, Fiber optic sensors for precursory acoustic signals detection in rockfall events, J. Eur. Opt. Soc. Rap. Public. 7, 11060
, Development of fiber optical ferrule-top cantilevers for sensing and beam-steering applications, Proc. SPIE 8439, 84390E
, Fiber-top and ferrule-top cantilevers for atomic force microscopy and scanning near field optical microscopy, Proc. SPIE 8430, 84300Z
, Velocity measurements of low speed air flows by ferrule-top cantilever optical fiber sensor, Sensors and Act. A178, 17
2011
, Top-down approach to fiber-top cantilevers, Optics Letters 36, 2898
, Ferrule-top atomic force microscope II: imaging in tapping mode and at low temperatures, Rev. Sci. Instr. 82, 046107
, Ferrule-top cantilever optical fiber sensor for velocity measurements of low speed air flows, SPIE 7753, 775340
, Optical fiber ferrule-top sensor for humidity measurements, SPIE 7753, 775358
, Fiber-top atomic force microscope probe with optical near field detection capabilities, J. Microscopy 242, 10
, Measurement of the Casimir force with a ferrule-top sensor, New J. Phys. 13, 023027
2010
, Halving the Casimir force with conductive oxides: experimental details, Phys. Rev. A 82, 062512
, Ferrule-top atomic force microscope, Rev. Sci. Instrum. 81, 123702
, Ferrule-top micromachined devices: design, fabrication, performance, Meas. Sci. Technol. 21, 094003
, Casimir force experiments in air: two birds with one stone, Proceedings of QFEXT09 (World Scientific), 98
, Tuning the mass of chameleon fields in Casimir force experiments, Phys. Rev. Lett. 104, 241101
, Casimir force experiments in air: two birds with one stone, Int. J. Mod. Phys. A25, 2231
, Contact potentials in Casimir force setups: an experimental analysis, J. Vac. Sc. Technl. B28, C4A25
2009
, Ferrule-top micromachined devices: a new approach to fibre-top technology, Proc. SPIE 7503, PDP07.
, Align-and-shine photolithography, Proc. SPIE 7503, 75036Q.
, Halving the Casimir force with conductive oxides, Phys. Rev. Lett. 103, 040402.
, Align-and-shine technique for series production of photolithography patterns on optical fibers, J. Micromech. and Microeng. 19, 047001.
, No anomalous scaling in electrostatic calibrations for Casimir force measurements, Phys. Rev. A 79, 024102.
, Fiber-top refractometer, Meas. Sci. Techn. 20, 034005.
2008
, Fiber-top atomic force microscope: a worthwhile challenge, OECC/ACOFT 2008 Conference Proceedings.
, Fibre-top micromachined devices, Proc. SPIE 7004, 7004-277.
, Carving fiber-top cantilevers with femtosecond laser micromachining, J. Micromech. and Microeng. 18, 035005.
2007
, Virtual photons in imaginary time: Computing exact Casimir forces via standard numerical-electromagnetism techniques, Phys. Rev. A 76, 032106.
, Computation and visualization of Casimir forces in arbitrary geometries: non-monotonic lateral forces and failure of proximity force approximations, Phys. Rev. Lett. 99, 080401.
, Fibre-top cantilevers: design, fabrication, and applications, Meas. Sci. Tech. 18, 3247.
, Casimir forces and torques: physics and applications to nanomechanics, IEEE J. Sel. Top. Quant. Electr. 13, 400.
, A fiber-top cantilever for hydrogen detection, Sensors and Act. B 121, 706.
2006
, Fiber-top cantilevers: a new sensor on the tip of a fiber, Optics and Photonics News 17, 39 (end of the year issue).
, Fiber-top atomic force microscope, Rev. Sci. Instr. 77, 106105 (selected for inclusion in Virtual J. Nanoscale Sci. & Tech.).
, Fiber-top cantilevers: a new generation of micromachined sensors for multipurpose applications, 18th International Optical Fiber Sensor Conference Technical Digest , (Optical Society of America, Washington DC, 2006) TuB2 and Frontiers in Optics 2007 Technical Digest (Optical Society of America, Washington DC, 2007) SThD3.
, Quantum electrodynamical torques in the presence of Brownian motion, New J. Phys. 8, 244.
, On the use of hydrogen switchable mirrors in Casimir force experiments, New Journal of Physics 8, 235 (selected for inclusion in IOP Select).
, Quantum fluctuations in the presence of thin metallic films and anisotropic materials, J. Phys. A: Math. Gen. 39, 6445.
, Carving fiber-top optomechanical transducers from optical fibers, J. Micromech. and Microeng. 16, 886.
, Monolithic fiber-top sensor for critical environments and standard applications, Appl. Phys. Lett. 88, 053501.
2005
, Observation of the skin-depth effect on the Casimir force between metallic surfaces, Proc. Nat. Ac. Sci. USA 102, 11989.
, The design of long range quantum electrodynamical forces and torques between macroscopic bodies, Solid State Commun. 135, 618.
, Torque induced on birefringent plates by quantum fluctuations, Phys. Rev. A 71, 042102.
2004
, Effect of hydrogen switchable mirrors on the Casimir force, Proc. Nat. Ac. Sci. USA 101, 4019.
, New challenges and directions in Casimir force experiments, Proceedings of the 6th Workshop on Quantum Field Theory Under the Influence of External Conditions (QFEXT03) , (Rinton Press, Princeton), 11.
before 2004
See the curriculum vitae of the group members.






