Photographer: onbekend

dr. R.J.C. (Robert) Spreeuw


  • Faculty of Science
    Van der Waals-Zeeman Instituut
  • Visiting address
    Science Park A
    Science Park 904  Amsterdam
    Room number: C4.256
  • Postal address:
    Postbus  94485
    1090 GL  Amsterdam
  • R.J.C.Spreeuw@uva.nl
    T: 0205255162

2016

  • Naber, J. B., Machluf, S., Torralbo Campo, L., Soudijn, M. L., van Druten, N. J., van Linden van den Heuvell, B., & Spreeuw, R. J. C. (2016). Adsorbate dynamics on a silica-coated gold surface measured by Rydberg Stark spectroscopy. Journal of Physics. B, Atomic, Molecular and Optical Physics. DOI: 10.1088/0953-4075/49/9/094005 [details]
  • Naber, J. B., Torralbo-Campo, L., Hubert, T., & Spreeuw, R. J. C. (2016). Raman transitions between hyperfine clock states in a magnetic trap. Physical Review A - Atomic, Molecular, and Optical Physics, 94(1). DOI: 10.1103/PhysRevA.94.013427 [details]
  • Idlas, S., Domenzain, L., Spreeuw, R., & Byrnes, T. (2016). Entanglement generation between spinor Bose-Einstein condensates using Rydberg excitations. Physical Review A - Atomic, Molecular, and Optical Physics, 93(2). DOI: 10.1103/PhysRevA.93.022319 [details]

2015

  • Overweg, H. C., den Haan, A. M. J., Eerkens, H. J., Alkemade, P. F. A., La Rooij, A. L., Spreeuw, R. J. C., ... Oosterkamp, T. H. (2015). Probing the magnetic moment of FePt micromagnets prepared by focused ion beam milling. Applied Physics Letters, 107(7), [072402]. DOI: 10.1063/1.4928929 [details] [PDF]

2014

  • La Rooij, A. L., & Spreeuw, R. J. C. (2014). Magnetische roosters van koude atomen als quantumsimulatoren. Nederlands Tijdschrift voor Natuurkunde, 80(6), 162-164. [details]
  • Leung, Y. F. V., Pijn, D. R. M., Schlatter, H., Torralbo-Campo, L., LaRooij, A. L., Mulder, G. B., ... Spreeuw, R. J. C. (2014). Magnetic-film atom chip with 10 μm period lattices of microtraps for quantum information science with Rydberg atoms. Review of Scientific Instruments, 85(5), 053102. DOI: 10.1063/1.4874005 [details] [PDF]

2013

  • Tauschinsky, A., Newell, R., van Linden van den Heuvell, H. B., & Spreeuw, R. J. C. (2013). Measurement of 87Rb Rydberg-state hyperfine splitting in a room-temperature vapor cell. Physical Review A, 87(4), 042522. DOI: 10.1103/PhysRevA.87.042522 [details] [PDF]
  • Tauschinsky, F. A., & Spreeuw, R. J. C. (2013). Sensitive absorption imaging of single atoms in front of a mirror. Optics Express, 21(8), 10188-10198. DOI: 10.1364/OE.21.010188 [details] [PDF]

2011

  • Leung, Y. F. V., Tauschinsky, A., van Druten, N. J., & Spreeuw, R. J. C. (2011). Microtrap arrays on magnetic film atom chips for quantum information science. Quantum Information Processing, 10(6), 955-974. DOI: 10.1007/s11128-011-0295-1 [details] [PDF]

2010

  • Tauschinsky, A., Thijssen, R. M. T., Whitlock, S., van Linden van den Heuvell, H. B., & Spreeuw, R. J. C. (2010). Spatially resolved excitation of Rydberg atoms and surface effects on an atom chip. Physical Review A, 81(6), 063411. DOI: 10.1103/PhysRevA.81.063411 [details] [PDF]
  • Whitlock, S., Ockeloen, C. F., & Spreeuw, R. J. C. (2010). Sub-Poissonian atom-number fluctuations by three-body loss in mesoscopic ensembles. Physical Review Letters, 104(12), 120402. DOI: 10.1103/PhysRevLett.104.120402 [details] [PDF]
  • Ockeloen, C. F., Tauschinsky, A. F., Spreeuw, R. J. C., & Whitlock, S. (2010). Detection of small atom numbers through image processing. Physical Review A, 82(6), 061606(R). DOI: 10.1103/PhysRevA.82.061606 [details] [PDF]
  • Schmied, R., Leibfried, D., Spreeuw, R. J. C., & Whitlock, S. (2010). Optimized magnetic lattices for ultracold atomic ensembles. New Journal of Physics, 12, [1030209]. DOI: 10.1088/1367-2630/12/10/103029 [details] [PDF]

2009

  • Whitlock, S., Gerritsma, R., Fernholz, T., & Spreeuw, R. J. C. (2009). Two-dimensional array of microtraps with atomic shift register on a chip. New Journal of Physics, 11(2), 023021. DOI: 10.1088/1367-2630/11/2/023021 [details] [PDF]

2008

  • Fernholz, T., Gerritsma, R., Whitlock, S., Barb, I., & Spreeuw, R. J. C. (2008). Fully permanent magnet atom chip for Bose-Einstein condensation. Physical Review A, 77(3), 033409. DOI: 10.1103/PhysRevA.77.033409 [details]

2007

  • Fernholz, T., Gerritsma, R., Kruger, P., & Spreeuw, R. J. C. (2007). Dynamically controlled toroidal and ring-shaped magnetic traps. Physical Review A, 75, 063406. [details]
  • Gerritsma, R., Whitlock, S. M., Fernholz, T., Schlatter, H., Luigjes, J. A., Thiele, J. U., ... Spreeuw, R. J. C. (2007). A lattice of microtraps for ultracold atoms based on patterned magnetic films. Physical Review A, 76, 033408. [details]
  • Hijmans, T. W., Huussen, T. N., & Spreeuw, R. J. C. (2007). Time and frequency domain solutions in an optical analogue of Grover's search algorithm. Journal of the Optical Society of America B - Optical Physics, 24, 214-220. DOI: 10.1364/JOSAB.24.000214 [details]
  • Spreeuw, R. J. C., & Hijmans, T. W. (2007). Robust quantum searching with spontaneously decaying qubits. Physical Review A, 76, 022306. [details]
  • Xing, Y. T., Barb, I., Gerritsma, R., Spreeuw, R. J. C., Luigjes, J. A., Xiao, Q., ... Goedkoop, J. B. (2007). Fabrication of magnetic atom chips based on FePt. Journal of Magnetism and Magnetic Materials, 313, 192-197. DOI: 10.1016/j.jmmm.2006.12.025 [details]

2006

  • Gerritsma, R., & Spreeuw, R. J. C. (2006). Topological constraints on magnetostatic traps. Physical Review A, 74(043405). [details]

2005

  • Barb, I., Gerritsma, R., Xing, Y. T., Goedkoop, J. B., & Spreeuw, R. J. C. (2005). Creating Ioffe-Pritchard micro-traps from permanent magnetic film with in-plane magnetization. European Physical Journal D, 35, 75-79. DOI: 10.1140/epjd/e2005-00055-3 [details]
  • Cornelussen, R. A., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (2005). An atom interferometer enabled by spontaneous decay. Physical Review A, 71, 033627. [details] [PDF]
  • Spreeuw, R. J. C., Ivanov, V., Cornelussen, R. A., & van Linden van den Heuvell, H. B. (2005). QED-Modified Radiative Properties and Dynamics of Cold Atoms Moving through an Evanescent Wave. Optics and Spectroscopy, 99(3), 459-465. DOI: 10.1134/1.2055944 [details]

2004

  • Cornelussen, R. A., Huussen, H. A., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (2004). Power-efficient frequency switching of a locked laser. Applied Physics B-Lasers and Optics, 19-23. [details]
  • Ivanov, V., Cornelussen, R. A., van Linden van den Heuvell, H. B., & Spreeuw, R. J. C. (2004). Observation of modified radiative properties of cold atoms in vacuum near a dielectric surface. Journal of optics. B, Quantum and semiclassical optics, 6, 454-459. DOI: 10.1088/1464-4266/6/11/005 [details]
  • Xing, Y. T., Eljaouhari, A., Barb, I., Gerritsma, R., Spreeuw, R. J. C., & Goedkoop, J. B. (2004). Hard magnetic FePt films for atom chips. Phys Status Solidi C, 3702-3705. [details]

2002

  • Bhattacharya, N., van Linden van den Heuvell, H. B., & Spreeuw, R. J. C. (2002). Implementation of quantum search algorithm using classical Fourier optics. Physical Review Letters, 88, 137901. [details] [PDF]
  • Cornelussen, R. A., van Amerongen, A. H., Wolschrijn, B. T., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (2002). Cold trapped atoms detected with evanescent waves. European Physical Journal D, 21, 347-351. DOI: 10.1140/epjd/e2002-00205-1 [details]
  • Wolschrijn, B. T., Cornelussen, R. A., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (2002). Guiding of cold atoms by a red-detuned laser beam of moderate power. New Journal of Physics, 4, 69.1-69.10. [details] [PDF]

2001

  • Spreeuw, R. J. C. (2001). Classical wave-optics analogy of quantum information processing. Physical Review A, 63(062302). [details] [PDF]
  • Voigt, D., Schilder, E. C., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (2001). Characterization of a high-power tapered semiconductor amplifier system. Applied Physics B-Lasers and Optics, 72, 279-284. DOI: 10.1007/s003400100513 [details]
  • Voigt, D., Wolschrijn, B. T., Cornelussen, R. A., Jansen, R., Bhattacharya, N., van Linden van den Heuvell, H. B., & Spreeuw, R. J. C. (2001). Elastic and inelastic evanescent-wave mirrors for cold atoms. Comptes Rendus de l'Académie des Sciences. Série IV, Physique, Astrophysique, t. 2(Série IV), 619-624. DOI: 10.1016/S1296-2147(01)01203-3 [details]
  • Wolschrijn, B. T., Voigt, D., Jansen, R., Cornelussen, R. A., Bhattacharya, N., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (2001). A rainbow of cold atoms caused by a stochastic process. Physical Review A, 64(065403-1/4). [details] [PDF]

2000

  • Spreeuw, R. J. C., Voigt, D., Wolschrijn, B. T., & van Linden van den Heuvell, H. B. (2000). Creating a low-dimensional quantum gas using dark states in an inelastic evanescent-wave mirror. Physical Review A[details] [PDF]
  • Voigt, D., Wolschrijn, B. T., Jansen, R., Bhattacharya, N., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (2000). Observation of radiation pressure exerted by evanescent waves. Physical Review A[details] [PDF]
  • de Jong, F. B., Wolschrijn, B. T., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (2000). Coherence-driven gain and its possible measurement in pump-probe experiments. Optics Communications, 179, 505-516. DOI: 10.1016/S0030-4018(99)00717-8 [details]

1998

  • Dieckmann, K., Spreeuw, R. J. C., Weidemuller, M., & Walraven, J. T. M. (1998). The Two-Dimensional Magneto-optical Trap as a Source of Slow Atoms. Physical Review A, 58, 3891. DOI: 10.1103/PhysRevA.58.3891 [details] [PDF]
  • Spreeuw, R. J. C. (1998). A classical analogy of entanglement. Foundations of Physics, 28, 361. DOI: 10.1023/A:1018703709245 [details]
  • de Jong, F. B., Mavromanolakis, A., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (1998). Synchronously pumped laser without inversion in cadmium. Physical Review A, 57, 4869. DOI: 10.1103/PhysRevA.57.4869 [details] [PDF]

1997

  • de Jong, F. B., Spreeuw, R. J. C., & van Linden van den Heuvell, H. B. (1997). Quantum Zeno effect and V-scheme lasing without inversion. Physical Review A, 55, 3918. DOI: 10.1103/PhysRevA.55.3918 [details] [PDF]
  • Kurtsiefer, C., Spreeuw, R. J. C., Drewsen, M., Wilkens, M., & Mlynek, J. (1997). Classical and nonclassical atom optics. In P. R. Berman (Ed.), Atom Interferometry. (pp. 171-216). San Diego: Academic Press. [details]
  • Müller-Seydlitz, T., Hartl, M., Brezger, B., Hänsel, H., Keller, C., Schnetz, A., ... Mlynek, J. (1997). Atoms in the lowest motional band of a three-dimensional optical lattice. Physical Review Letters, 78, 1038-1041. DOI: 10.1103/PhysRevLett.78.1038 [details] [PDF]

1996

  • Spreeuw, R. J. C., Pfau, T., Janicke, U., Wilkens, M., & Mlynek, J. (1996). Scheme for a bosonic atom laser. In M. Allegrini, M. Inguscio, & A. Sasso (Eds.), Laser Spectroscopy XII. (pp. 301-302). Singapore: World Scientific. [details]
  • Drewsen, M., Spreeuw, R. J. C., & Mlynek, J. (1996). Achromatic lenses for atoms using velocity-dependent light-induced potentials. Optics Communications, 125, 77-81. DOI: 10.1016/0030-4018(95)00727-X [details] [PDF]
  • Pfau, T., Kurtsiefer, C., Ekstrom, C. R., Spreeuw, R. J. C., Hartl, M., Janicke, U., ... Mlynek, J. (1996). "Non-classical" atom optics. In A. Aspect, W. Barletta, & R. Bonifacio (Eds.), Proc. of the Int. School of Physics "Enrico Fermi," Varenna, Course CXXXI onCoherent and Collective Interactions ofParticles and Radiation Beams. (pp. 529). IOS Press. [details]
  • Wilkens, M., Spreeuw, R. J. C., Pfau, T., Janicke, U., & Mlynek, J. (1996). Towards a laser-like source of atoms. Prog. Crystal Growth and Charact, 33, 385-393. DOI: 10.1016/0960-8974(96)83677-1 [details]

1990

  • Spreeuw, R. J. C., NEELEN, R. C., vanDruten, N. J., ELIEL, E. R., & Woerdman, J. P. (1990). MODE-COUPLING IN A HE-NE RING LASER WITH BACKSCATTERING. Physical Review A, 42(7), 4315-4324. DOI: 10.1103/PhysRevA.42.4315 [details]
  • Spreeuw, R. J. C., vanDruten, N. J., BEIJERSBERGEN, M. W., ELIEL, E. R., & Woerdman, J. P. (1990). CLASSICAL REALIZATION OF A STRONGLY DRIVEN 2-LEVEL SYSTEM. Physical Review Letters, 65(21), 2642-2645. DOI: 10.1103/PhysRevLett.65.2642 [details]

2013

  • Tauschinsky, A. F., Ockeloen, C. F., van Druten, N. J., Whitlock, S., & Spreeuw, R. J. C. (2013). Improved detection of small atom numbers through image processing. Application note DU934N-BR-DD[details] [PDF]

2010

  • Tauschinsky, A. F., Ockeloen, C. F., Thijssen, R. M. T., Whitlock, S., & Spreeuw, R. J. C. (2010). Array of mesoscopic ensembles on a magnetic atom chip. In H. Katori, K. Yoneda, K. Nakagawa, & F. Shimizu (Eds.), Proceedings of the 19th International Conference on Laser Spectroscopy (ICOLS 2009), Kussharo, Hokkaido, Japan (pp. 74-82). Singapore: World Scientific. DOI: 10.1142/9789814282345_0007 [details]

2008

  • Gerritsma, R., van Amerongen, A., van Es, J-J., Whitlock, S., van Druten, N. J., & Spreeuw, R. (2008). Atoomchips. Nederlands Tijdschrift voor Natuurkunde, 74(3), 82-85. [details]

1996

  • de Jong, F. B., Spreeuw, R. J. C., D?nszelmann, A., Muller, H. G., & van Linden van den Heuvell, H. B. (1996). Classification of lasers without inversion. In M. V. Fedorov, & H. G. Muller (Eds.), Super-intense laser-atom physics IV. (pp. 593-602). Kluwer. [details]

1995

  • Spreeuw, R. J. C., van Druten, N. J., Beijersbergen, M. W., Eliel, E. R., & Woerdman, J. P. (1995). Classical realization of a strongly driven two-level system. SPIE Milestone Series, 104(21), 42. [details]

1990

  • Spreeuw, R. J. C., Centeno Neelen, R., van Druten, N. J., Eliel, E. R., & Woerdman, J. P. (1990). Mode coupling in a He-Ne ringlaser with backscattering. Physical Review A, 42(7), 4315-4324. DOI: 10.1103/PhysRevA.42.4315 [details] [PDF]
  • Spreeuw, R. J. C., van Druten, N. J., Beijersbergen, M. W., Eliel, E. R., & Woerdman, J. P. (1990). Classical realization of a strongly driven two-level system. Physical Review Letters, 65(21), 2642-2645. DOI: 10.1103/PhysRevLett.65.2642 [details / files]

1999

  • Spreeuw, R. J. C. (1999). Een laser voor materiegolven. Over de Grenzen van het Weten[details]

1996

  • Spreeuw, R. J. C. (1996). Waarom de kat van Schrodinger of leeft, of niet. Nederlands Tijdschrift voor Natuurkunde, 62, 343-344. [details]

2017

  • La Rooij, A. L. (2017). Nanoscale magnetic atom chips for quantum simulation [details] [PDF]

Journal editor

  • Klamer, M. (editor), Molema, I. (editor), Spreeuw, R.J.C. (editor), Stapel, D. (editor) & Veenhof, H. (editor) (1999): Over de Grenzen van het Weten (Journal).
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