新規登録 | ログイン | FAQ      [?] 

タグ: trap [216 articles]

Recent papers classified by the tag trap.
  • Trapping of a methanesulfonanilide by closure of the HERG potassium channel activation gate.
    J Gen Physiol, Vol. 115, No. 3. (March 2000), pp. 229-240.
    posted to trap herg drug by tomb on 2007-02-12 07:25:06 as read
  • Microwave potentials and optimal control for robust quantum gates on an atom chip
    (9 Jun 2006)
    by Philipp Treutlein, Theodor W Hänsch, Jakob Reichel, Antonio Negretti, Markus A Cirone, Tommaso Calarco
    posted to trap phase microwave gate chip by tapnews on 2007-01-28 10:48:22 as ** along with 1 person hweel20060612
  • Optical dipole traps for cold atoms using diffracted laser light
    Physical Review A (Atomic, Molecular, and Optical Physics), Vol. 73, No. 1. (2006)
    by Glen D Gillen, Shekhar Guha, Katharina Christandl
    posted to dipole generation trap by tapnews on 2007-03-26 12:29:43 as **
  • Nondestructive interferometric characterization of an optical dipole trap
    Physical Review A (Atomic, Molecular, and Optical Physics), Vol. 75, No. 3. (2007)
    by Plamen G Petrov, Daniel Oblak, Carlos, Niels Kjaergaard, Eugene S Polzik
    posted to dipole dispersive measurement trap by tapnews on 2007-03-26 12:13:38 as **
  • Demonstration of a Fundamental Quantum Logic Gate
    Physical Review Letters, Vol. 75, No. 25. (18 December 1995), 4714.
    by C Monroe, DM Meekhof, BE King, WM Itano, DJ Wineland
    posted to computer ion monroe quantum trap by substance33 on 2008-04-19 07:58:14 as ** along with 1 person martinthesis
  • Simple demonstration of storing macroscopic particles in a “Paul trap”
    American Journal of Physics, Vol. 59, No. 9. (1991), pp. 807-813.
    by H Winter, HW Ortjohann
    posted to atomic-physics experimental-project paul trap by sidkshatriya on 2007-12-11 11:03:57 as read
  • Less is more: Experiments with an individual atomic particle at rest in free space
    American Journal of Physics, Vol. 58, No. 1. (1990), pp. 17-27.
    by Hans Dehmelt
    posted to atomic-physics experimental-project paul trap by sidkshatriya on 2007-12-11 11:04:49 as *****
  • Electrodynamic Containment of Charged Particles
    Journal of Applied Physics, Vol. 30, No. 3. (1959), pp. 342-349.
    by RF Wuerker, H Shelton, RV Langmuir
    posted to atomic-physics confinement experimental-project trap by sidkshatriya on 2007-12-14 15:36:19 as read
  • A simple laser cooling and trapping apparatus for undergraduate laboratories
    American Journal of Physics, Vol. 70, No. 9. (2002), pp. 965-971.
    by Angela S Mellish, Andrew C Wilson
    posted to cooling laser trap by sidkshatriya on 2007-12-11 10:53:23 as **
  • A magnetic suspension system for atoms and bar magnets
    American Journal of Physics, Vol. 61, No. 4. (1993), pp. 304-309.
    posted to atomic-physics experimental-project magnetic trap by sidkshatriya on 2007-12-11 10:49:55 as ****
  • Applications of the Mathieu equation
    American Journal of Physics, Vol. 64, No. 1. (1996), pp. 39-44.
    by Lawrence Ruby
    posted to atomic-physics experimental-project paul trap by sidkshatriya on 2007-12-11 10:41:10 as **
  • Rotating saddle Paul trap
    American Journal of Physics, Vol. 63, No. 2. (1995), pp. 186-187.
    by Wolfgang Rueckner, Justin Georgi, Douglass Goodale, Daniel Rosenberg, David Tavilla
  • Coulomb crystals of oil droplets
    American Journal of Physics, Vol. 67, No. 4. (1999), pp. 310-315.
    by Scott Robertson, Richard Younger
    posted to atomic-physics experimental-project paul trap by sidkshatriya on 2007-12-11 10:42:23 as *****
  • Determination of the force constant of a single-beam gradient trap by measurement of backscattered light
    Appl. Opt., Vol. 35 (December 1996), pp. 7112-7116.
  • Numerical Modeling of Optical Gradient Traps Using the Vector Finite Element Method
    Journal of Computational Physics, Vol. 159 (March 2000), pp. 13-37.
    by DA White
    posted to element finite gradient model numerical optical trap tweezers vector by rodney on 2008-02-06 01:23:18 as **
  • Laser Trapping of a Metallic Probe for Near Field Microscopy
    (2001), pp. 143-161.
    by T Sugiura
    edited by S Kawata
    posted to field laser metal microscopy near nsom optical trap tweezers by rodney on 2008-01-12 22:03:28 as **
  • Laser-Driven Microsecond Temperature Cycles Analyzed by Fluorescence Polarization Microscopy
    Biophys. J., Vol. 90, No. 8. (15 April 2006), pp. 2958-2969.
    by Rob Zondervan, Florian Kulzer, Harmen van der Meer, Jos A Disselhorst, Michel Orrit
  • Internal Cell Manipulation Using Infrared Laser Traps
    Proceedings of the National Academy of Science, Vol. 86 (October 1989), pp. 7914-7918.
    by A Ashkin, JM Dziedzic
    posted to cell infrared manipulation optical trap tweezers by rodney on 2008-01-24 21:19:12 as **
  • Optical alignment and spinning of laser-trapped microscopic particles
    Nature, Vol. 394, No. 6691. (1998), pp. 348-350.
  • Forces of a single-beam gradient laser trap on a dielectric sphere in the ray optics regime
    Biophys. J., Vol. 61, No. 2. (1 February 1992), pp. 569-582.
    by A Ashkin
    posted to forces gradient optical rayoptics single-beam trap tweezers by rodney on 2008-06-23 22:56:02 as **
  • Experimental observation of optically trapped atoms
    Physical Review Letters, Vol. 57, No. 3. (1986), pp. 314-317.
    by Steven Chu, Bjorkholm, A Ashkin, A Cable
    posted to atoms experiment optical trap tweezers by rodney on 2008-02-05 03:02:33 as read along with 1 person tapnews
  • Optically induced angular alignment of trapped birefringent micro-objects by linearly polarized light
    Phys Rev E., Vol. 59, No. 2-3. (1999), pp. 3676-3681.
    by E Higurashi, R Sawada, T Ito
  • Stability analysis of optofluidic transport on solid-core waveguiding structures
    Nanotechnology, Vol. 19, No. 4. (30 January 2008), pp. 45704-45714.
    by Allen H Yang, David Erickson
  • Trapping cavitation bubbles with a self-focused laser beam
    Optics Letters, Vol. 29 (September 2004), pp. 2136-2138.
    by JY Ye, G Chang, TB Norris, C Tse, MJ Zohdy, KW Hollman, M O'Donnell, JR Baker
  • Measurement of small forces using an optical trap
    Review of Scientific Instruments, Vol. 65, No. 9. (1994), pp. 2762-2768.
    by Lucien P Ghislain, Neil A Switz, Watt W Webb
    posted to forces heat laser optical surface trap tweezers by rodney on 2007-12-10 04:14:56 as **
  • notes Optical trapping of microscopic metal particles
    Opt Lett, Vol. 19, No. 22. (1994), pp. 1807-1809.
    by Shunichi Sato, Yasunori Harada, Yoshio Waseda
  • Three-dimensional trapping of Mie metallic particles by the use of obstructed laser beams
    Journal of Applied Physics, Vol. 91, No. 3. (2002), pp. 1606-1612.
    by Min Gu, Dru Morrish
    posted to 3-d mie optical trap tweezers by rodney on 2008-01-12 21:54:29 as **
  • A revolution in optical manipulation
    Nature, Vol. 424 (August 2003), pp. 810-816.
    by DG Grier
    posted to optical review trap trapping tweezers by rodney on 2007-12-26 17:30:53 as **
  • Photonic force spectroscopy on metallic and absorbing nanoparticles
    Physical Review B (Condensed Matter and Materials Physics), Vol. 71, No. 4. (2005)
    by Patrick C Chaumet, Adel Rahmani, Manuel N Vesperinas
  • Gold nanoparticles: enhanced optical trapping and sensitivity coupled with significant heating
    Opt. Lett., Vol. 31, No. 16. (2006), pp. 2429-2431.
    by Yeonee Seol, Amanda E Carpenter, Thomas T Perkins
    posted to enhancement gold heat nanoparticles optical trap tweezers by rodney on 2007-11-02 21:27:53 as *****
  • Coherent radiation scattering by resonant nanostructures
    Physical Review B, Vol. 62, No. 3. (15 July 2000), 1639.
    by VV Klimov, VS Letokhov
  • Three-dimensional magneto-optic trap for micro-object manipulation
    Opt. Lett., Vol. 26, No. 17. (2001), pp. 1359-1361.
  • Micromanipulation by laser microbeam and optical tweezers: from plant cells to single molecules.
    J Microsc, Vol. 198, No. Pt 3. (June 2000), pp. 182-187.
  • Mechanical interaction between nano objects induced by resonant light
    OSA Trends Opt. Photonics Series, Vol. 97, pp. 713-715.
    by T Iida, H Ishihara, AA Sawchuk
  • Application of optical traps in vivo.
    Methods Enzymol, Vol. 361 (2003), pp. 162-174.
    by SP Gross
    posted to heat invivo optical trap tweezers by rodney on 2008-01-29 07:51:15 as **
  • Temperature Control Methods in a Laser Tweezers System
    Biophys. J., Vol. 89, No. 2. (1 August 2005), pp. 1308-1316.
    by Hanbin Mao, Ricardo J Arias-González, Steven B Smith, Ignacio Tinoco, Carlos Bustamante
  • Optical Trapping of Titania/Silica Core-Shell Colloidal Particles
    Journal of Colloid and Interface Science, Vol. 221, No. 2. (15 January 2000), pp. 301-307.
    by P Viravathana, DWM Marr
    posted to colloidal core-shell optical silica titania trap tweezers by rodney on 2008-01-13 05:59:44 as **
  • Heating by absorption in the focus of an objective lens
    Optics Letters, Vol. 23 (March 1998), pp. 325-327.
    by A Schönle, SW Hell
  • Micro Magnetic Tweezers for Nanomanipulation Inside Live Cells
    Biophys. J., Vol. 88, No. 3. (1 March 2005), pp. 2137-2144.
    by Anthony H de Vries, Bea E Krenn, Roel van Driel, Johannes S Kanger
    posted to cells intracellular magnetic trap tweezers by rodney on 2008-01-28 01:37:49 as **
  • Optical forces on small particles: Attractive and repulsive nature and plasmon-resonance conditions
    J Opt Soc Am A, Vol. 20, No. 7. (2003), pp. 1201-1209.
  • Evidence for localized cell heating induced by infrared optical tweezers.
    Biophys. J., Vol. 68, No. 5. (1 May 1995), pp. 2137-2144.
    by Y Liu, DK Cheng, GJ Sonek, MW Berns, CF Chapman, BJ Tromberg
  • Pico-Newton friction force measurements using a laser-trapped microsphere
    Jpn J Appl Phys Part 2 Letter, Vol. 37, No. 6 A. (1998)
    by Yasushi Inouye, Satoru Shoji, Hiromitsu Furukawa, Osamu Nakamura, Satoshi Kawata
  • Characterization of trapping force in the presence of spherical aberration
    Journal of Modern Optics, Vol. 45, No. 10. (1998), pp. 2159-2168.
    by Pu C Ke, Min Gu
    posted to aberrations optical spherical trap tweezers by rodney on 2008-02-06 01:10:54 as **
  • Optical tweezers in interaction with an apertureless probe
    Journal of Applied Physics, Vol. 102, No. 2. (2007)
    by Patrick C Chaumet, Bernard Pouligny, Rumiana Dimova, Neso Sojic
    posted to apertureless citedby optical theory trap tweezers by rodney on 2007-09-28 18:22:05 as **
  • Kinetically Locked-In Colloidal Transport in an Array of Optical Tweezers
    Physical Review Letters, Vol. 89, No. 12. (2002), 128301.
    by Pamela T Korda, Michael B Taylor, David G Grier
    posted to array colloidal locked optical transport trap tweezers by rodney on 2008-01-13 01:02:01 as **
  • Laser tweezing near resonance absorption
    Photon Migration, Optical Coherence Tomography, and Microscopy, Vol. 4431, No. 1. (2001), pp. 341-351.
    by Rodney R Agayan, Christoph F Schmidt, Fred Gittes, Raoul Kopelman
    edited by Stefan A Engels, Michael F Kaschke
  • Interference model for back-focal-plane displacement detection in optical tweezers
    Optics Letters, Vol. 23 (January 1998), pp. 7-9.
    by F Gittes, CF Schmidt
  • Raman spectra and optical trapping of highly refractive and nontransparent particles
    Applied Physics Letters, Vol. 81 (August 2002), pp. 951-953.
    by C Xie, Li
  • Measurements of trapping efficiency and stiffness in optical tweezers
    Optics Communications, Vol. 214 (December 2002), pp. 15-24.
  • Numerical modelling of optical trapping
    Computer Physics Communications, Vol. 142, No. 1-3. (15 December 2001), pp. 468-471.
    posted to modeling numerical optical theory trap tweezers by rodney on 2008-02-06 01:28:09 as **
  • 注: このページを引用する時は次のURLでどうぞ: http://www.citeulike.org/tag/trap

    Result page: 1 2 3 4 5 Next RIS BibTeX
    CiteULike organises scholarly (or academic) papers or literature and provides bibliographic (which means it makes bibliographies) for universities and higher education establishments. It helps undergraduates and postgraduates. People studying for PhDs or in postdoctoral (postdoc) positions. The service is similar in scope to EndNote or RefWorks or any other reference manager like BibTeX, but it is a social bookmarking service for scientists and humanities researchers.