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1
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0000691873
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Nanofabrication using neutral atomic beams
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J. H. Thywissen, K. S. Johnson, R. Younkin, N. H. Dekker, K. K. Berggren, A. P. Chu, M. Prentiss, and S. A. Lee, "Nanofabrication using neutral atomic beams," J. Vac. Sci. Technol. B 15, 2093-2100 (1997).
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(1997)
J. Vac. Sci. Technol. B
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Thywissen, J.H.1
Johnson, K.S.2
Younkin, R.3
Dekker, N.H.4
Berggren, K.K.5
Chu, A.P.6
Prentiss, M.7
Lee, S.A.8
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2
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84975604812
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The mechanical effects of light
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For a discussion of light forces and applications, see, for example, the following special issues
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For a discussion of light forces and applications, see, for example, the following special issues: P. Meystre and S. Stenholm, eds., "The mechanical effects of light" J. Opt. Soc. Am. B 2, 1706-1853 (1985); S. Chu and C. Wieman, eds., "Laser cooling and trapping of atoms," J. Opt. Soc. Am. B 6, 2020-2270 (1989); J. Mlynek, V. Balykin, and P. Meystre, eds., "Optics and interferometry with atoms," Appl. Phys. B 54, 319-485 (1992). See also Atom Optics, Proc. SPIE 2995, M. G. Prentiss and W. D. Phillips eds. (SPIE, Bellingham, Washington, 1997), pp. 2-300.
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J. Opt. Soc. Am. B
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Meystre, P.1
Stenholm, S.2
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3
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84975568412
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Laser cooling and trapping of atoms
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For a discussion of light forces and applications, see, for example, the following special issues: P. Meystre and S. Stenholm, eds., "The mechanical effects of light" J. Opt. Soc. Am. B 2, 1706-1853 (1985); S. Chu and C. Wieman, eds., "Laser cooling and trapping of atoms," J. Opt. Soc. Am. B 6, 2020-2270 (1989); J. Mlynek, V. Balykin, and P. Meystre, eds., "Optics and interferometry with atoms," Appl. Phys. B 54, 319-485 (1992). See also Atom Optics, Proc. SPIE 2995, M. G. Prentiss and W. D. Phillips eds. (SPIE, Bellingham, Washington, 1997), pp. 2-300.
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(1989)
J. Opt. Soc. Am. B
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, pp. 2020-2270
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Chu, S.1
Wieman, C.2
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4
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4243100403
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Optics and interferometry with atoms
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For a discussion of light forces and applications, see, for example, the following special issues: P. Meystre and S. Stenholm, eds., "The mechanical effects of light" J. Opt. Soc. Am. B 2, 1706-1853 (1985); S. Chu and C. Wieman, eds., "Laser cooling and trapping of atoms," J. Opt. Soc. Am. B 6, 2020-2270 (1989); J. Mlynek, V. Balykin, and P. Meystre, eds., "Optics and interferometry with atoms," Appl. Phys. B 54, 319-485 (1992). See also Atom Optics, Proc. SPIE 2995, M. G. Prentiss and W. D. Phillips eds. (SPIE, Bellingham, Washington, 1997), pp. 2-300.
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(1992)
Appl. Phys. B
, vol.54
, pp. 319-485
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Mlynek, J.1
Balykin, V.2
Meystre, P.3
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5
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-
84975604812
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Atom Optics
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SPIE, Bellingham, Washington
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For a discussion of light forces and applications, see, for example, the following special issues: P. Meystre and S. Stenholm, eds., "The mechanical effects of light" J. Opt. Soc. Am. B 2, 1706-1853 (1985); S. Chu and C. Wieman, eds., "Laser cooling and trapping of atoms," J. Opt. Soc. Am. B 6, 2020-2270 (1989); J. Mlynek, V. Balykin, and P. Meystre, eds., "Optics and interferometry with atoms," Appl. Phys. B 54, 319-485 (1992). See also Atom Optics, Proc. SPIE 2995, M. G. Prentiss and W. D. Phillips eds. (SPIE, Bellingham, Washington, 1997), pp. 2-300.
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Proc. SPIE
, vol.2995
, pp. 2-300
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Prentiss, M.G.1
Phillips, W.D.2
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6
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11944275587
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Using light as a lens for submicron, neutral-atom lithography
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G. Timp, R. E. Behringer, D. M. Tennant, J. E. Cunningham, M. Prentiss, and K. K. Berggren, "Using light as a lens for submicron, neutral-atom lithography," Phys. Rev. Lett. 69, 1636-1639 (1992).
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Timp, G.1
Behringer, R.E.2
Tennant, D.M.3
Cunningham, J.E.4
Prentiss, M.5
Berggren, K.K.6
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7
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0000669790
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High-contrast, high-resolution focusing of neutral atoms using light forces
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V. Natarajan, R. E. Behringer, and G. Timp, "High-contrast, high-resolution focusing of neutral atoms using light forces," Phys. Rev. A 53, 4381-4385 (1996).
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Phys. Rev. A
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Natarajan, V.1
Behringer, R.E.2
Timp, G.3
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8
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0027910022
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Laser-focused atomic deposition
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J. J. McClelland, R. E. Scholten, E. C. Palm, and R. J. Celotta, "Laser-focused atomic deposition," Science 262, 877-880 (1993).
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McClelland, J.J.1
Scholten, R.E.2
Palm, E.C.3
Celotta, R.J.4
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9
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0029635430
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Nanofabrication of a two-dimensional array using laser-focused atomic deposition
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R. Gupta, J. J. McClelland, Z. J. Jabbour, and R. J. Celotta, "Nanofabrication of a two-dimensional array using laser-focused atomic deposition," Appl. Phys, Lett. 67, 1378-1380 (1995).
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Gupta, R.1
McClelland, J.J.2
Jabbour, Z.J.3
Celotta, R.J.4
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10
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0031069436
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Nanometerscale lithography with chromium atoms using light forces
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U. Drodofsky, J. Stuhler, B. Brezger, T. Schulze, M. Drewsen, T. Pfau, and J. Mlynek, "Nanometerscale lithography with chromium atoms using light forces," Microelectron. Eng. 35, 285-288 (1997).
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Microelectron. Eng.
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Drodofsky, U.1
Stuhler, J.2
Brezger, B.3
Schulze, T.4
Drewsen, M.5
Pfau, T.6
Mlynek, J.7
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11
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0002600518
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Nanoscale atomic lithography with a cesium atomic beam
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F. Lison, H.-J. Adams, D. Haubrich, M. Kreis, S. Nowak, and D. Meschede, "Nanoscale atomic lithography with a cesium atomic beam," Appl. Phys. B 65, 419-421 (1997).
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Appl. Phys. B
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Lison, F.1
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Haubrich, D.3
Kreis, M.4
Nowak, S.5
Meschede, D.6
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12
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0029485981
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Light force cooling, focusing, and nanometer-scale deposition of aluminum atoms
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R. W. McGowan, D. M. Giltner, and S. A. Lee, "Light force cooling, focusing, and nanometer-scale deposition of aluminum atoms," Opt. Lett. 20, 2535-2537 (1995).
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Opt. Lett.
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McGowan, R.W.1
Giltner, D.M.2
Lee, S.A.3
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13
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0037819777
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Optical manipulation of Group III atoms
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S. J. Rehse, R. W. McGowan, and S. A. Lee, "Optical manipulation of Group III atoms," Appl. Phys. B 70, 657-660 (2000).
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(2000)
Appl. Phys. B
, vol.70
, pp. 657-660
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Rehse, S.J.1
McGowan, R.W.2
Lee, S.A.3
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14
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0001311383
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Nuclear magnetic octupole moments of the stable gallium isotopes
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71Ga, A = 242.43395(20) MHz and B = 39.39904(40) MHz.
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Phys. Rev.
, vol.96
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Daly R.T., Jr.1
Holloway, J.H.2
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15
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0023314969
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High-resolution laser spectroscopy of aluminum, gallium, and thallium
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K. H. Weber, J. Lawrenz, A. Obrebski, and K. Niemax, "High-resolution laser spectroscopy of aluminum, gallium, and thallium," Phys. Scr. 35, 309-312 (1987).
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Phys. Scr.
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Weber, K.H.1
Lawrenz, J.2
Obrebski, A.3
Niemax, K.4
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16
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0003392735
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U.S. GPO, Washington, D.C.
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C. E. Moore, Atomic Energy Levels (U.S. GPO, Washington, D.C., 1971), Vol. II.
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Atomic Energy Levels
, vol.2
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Moore, C.E.1
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17
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0037751793
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Hyperfine structure
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G. W. F. Drake, American Institute of Physics, Woodbury, N.Y.
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G. T. Emery, "Hyperfine structure," in Atomic, Molecular, and Optical Physics Handbook, G. W. F. Drake, ed. (American Institute of Physics, Woodbury, N.Y., 1996), pp. 198205.
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Atomic, Molecular, and Optical Physics Handbook
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Emery, G.T.1
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18
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84893994249
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note
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4 Millenia laser. The tunable dye laser was a Coherent 699-21 with Rhodamine 6G dye.
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-
-
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19
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84893989529
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-
note
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2. These numbers may not represent optimum second-harmonic-generation efficiency, as the focusing of the doubling cavity's waist was not optimized for this particular crystal.
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-
-
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20
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0000941943
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Interferometric real-time display of cw dye laser wavelength with sub-Doppler accuracy
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J. L. Hall and S. A. Lee, "Interferometric real-time display of cw dye laser wavelength with sub-Doppler accuracy," Appl. Phys. Lett. 29, 367-369 (1976).
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Appl. Phys. Lett.
, vol.29
, pp. 367-369
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Hall, J.L.1
Lee, S.A.2
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21
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0042742148
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Precision wavelength measurements and new experimental Lamb shifts in helium
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L. Hlousek, S. A. Lee, and W. M. Fairbank, Jr., "Precision wavelength measurements and new experimental Lamb shifts in helium," Phys. Rev. Lett. 50, 328-331 (1983).
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Phys. Rev. Lett.
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Hlousek, L.1
Lee, S.A.2
Fairbank W.M., Jr.3
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22
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84893987238
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note
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F = 3 transition. These values are typical of the other F → F′ transitions as well.
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23
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0017219919
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Nuclear spins and moments
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G. H. Fuller, "Nuclear spins and moments," J. Phys. Chem. Ref. Data 5, 835-1016 (1976).
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J. Phys. Chem. Ref. Data
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Fuller, G.H.1
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