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0019047013
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A cesium beam atomic clock using laser optical pumping. Preliminary test
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M. Arditi and J. L. Piqué“A cesium beam atomic clock using laser optical pumping. Preliminary test,” J. Phys. Lett., vol. 41. pp. L379-381 Aug. 1980.
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Arditi, M.1
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84936898719
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Performance of an optically pumped cesium frequency standard
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Beijing, China: Pergamon
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Y. Koga, S. I. Oshima Y. Nakadau, and T. Ikegami, “Performance of an optically pumped cesium frequency standard,” in Electromagnetic Metrology, Proc. of International Symposium on Electromagnetic Metrology (ISEM ‘89) Beijing, China: Pergamon, 1989, pp. 267–273.
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Electromagnetic Metrology, Proc. of International Symposium on Electromagnetic Metrology (ISEM '89)
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Koga, Y.1
Oshima, S.I.2
Nakadau, Y.3
Ikegami, T.4
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3
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0027866328
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NIST-7 the new US primary frequency standard
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R. E. Drullinger, J. P. Lowe, D. J. Glaze, and Jon Shirley, “NIST-7 the new US primary frequency standard,” to appear in Proc. of 7th Euro. Freq. and Time Forum, Neuchatel, March 1993.
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Proc. of 7th Euro. Freq. and Time Forum, Neuchatel
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Drullinger, R.E.1
Lowe, J.P.2
Glaze, D.J.3
Shirley, J.4
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4
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84936897371
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Design of an optically purnped Cs laboratory frequency standard
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Ancona, Italy: Springer-Verlag
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E. de Clercq, A. Clairon, B. Dahmani, A. Gérard and P. Aynié“Design of an optically purnped Cs laboratory frequency standard,” in Proc., 4th Symp., Freq. Standards and Metrology. Ancona, Italy: Springer-Verlag, 1989, pp. 120–125.
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Proc., 4th Symp., Freq. Standards and Metrology
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de Clercq, E.1
Clairon, B.2
Dahmani, B.3
Gérard, A.4
Aynié, P.5
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5
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0027580775
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The LPTF optically pumped primary frequency standard
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E. de Clercq, G. D. Rovera, S. Bouzid, and A. Clairon, “The LPTF optically pumped primary frequency standard,” to appear in IEEE Trans. lnstrum. Meas., April 1993.
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de Clercq, E.1
Rovera, G.D.2
Bouzid, S.3
Clairon, A.4
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0026141913
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Feasibility of end to end phase shift correction from the outside of sealed cesium beam tubes
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A. de Marchi, O. Francescangeli and G. P. Bava, “Feasibility of end to end phase shift correction from the outside of sealed cesium beam tubes,” IEEE Trans. Instrum. Meas., vol. 40, pp. 165–169, April 1991.
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de Marchi, A.1
Francescangeli, O.2
Bava, G.P.3
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0001022142
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State selection in a cesium beam by laser diode optical pumping
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G. Avila, V. Giordano, V. Candelier, E. De Clercq, G. Theobald, and P. Cerez, “State selection in a cesium beam by laser diode optical pumping,” Phys. Rev., vol. A36, pp. 3719–3728, Oct. 1987.
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Avila, G.1
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84935880396
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Microwave Ramsey resonances from a laser diode optically pumped cesium beam resonator
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G. Avila, E. de Clercq M. de Labachellerie, and P. Cerez, “Microwave Ramsey resonances from a laser diode optically pumped cesium beam resonator,” IEEE Trans. Instrum. Meas., vol. IM-34, pp. 139–143, June 1985.
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Avila, G.1
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de Labachellerie, M.3
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10
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84915307183
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The effect of laser line narrowing on the performance of optically pumped cesium atomic beam frequency standards
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S. Oshima Y. Koga, Y. Nakadan, L. Hollberg, and R. Drullinger, “The effect of laser line narrowing on the performance of optically pumped cesium atomic beam frequency standards,” in Proc. 2nd Euro. Freq. and Time Forum, pp. 531–536, 1988.
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Oshima, S.1
Koga, Y.2
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Hollberg, L.4
Drullinger, R.5
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11
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0027583037
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Analysis of the noise sources in an optically pumped cesium beam resonator
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N. Dimarcq, V. Giordano, P. Cerez, and G Theobald, “Analysis of the noise sources in an optically pumped cesium beam resonator,” to appear in IEEE Trans. Instrum. Meas., April 1993.
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IEEE Trans. Instrum. Meas.
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Dimarcq, N.1
Giordano, V.2
Cerez, P.3
Theobald, G.4
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14
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0026135850
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A limit to frequency stability of passive frequency standards due to intermodulation effect
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C. Audoin, V. Candelier, and N. Dimarcq, “A limit to frequency stability of passive frequency standards due to intermodulation effect,” IEEE Trans. instrum. Meas., vol. 40, pp. 121–125, 1991.
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Audoin, C.1
Candelier, V.2
Dimarcq, N.3
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84936898722
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Measure of the absolute microwawe field experienced by atoms in a Ramsey cavity
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G. D. Rovera et al. “Measure of the absolute microwawe field experienced by atoms in a Ramsey cavity,” to be published.
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Rovera, G.D.1
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17
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0023669899
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Effects of servoloop modulation in atomic beam frequency standards employing a Ramsey cavity
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A. de Marchi, G. D. Rovera, and A. Premoli, “Effects of servoloop modulation in atomic beam frequency standards employing a Ramsey cavity,” IEEE Trans. Ultrason. Ferroelec. Freq. Contr. vol. 34, pp. 582–591, Nov. 1987.
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de Marchi, A.1
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0026369504
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Light shift in an optically pumped Cs beam frequency standard
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S. Oshima, Y. Nakadan, T. Ikegami, and Y. Koga, “Light shift in an optically pumped Cs beam frequency standard,” IEEE Trans. instrum. Meas. vol. 40, pp. 1003-1007 Dec 1991.
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Oshima, S.1
Nakadan, Y.2
Ikegami, T.3
Koga, Y.4
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19
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0021444526
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Pulling by neighbouring transitions and its effects on the performance of Caesium beam frequency standards
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A. De Marchi, G.D. Rovera, and A. Premoli: “Pulling by neighbouring transitions and its effects on the performance of Caesium beam frequency standards” Metrologia vol. 20, pp. 37-47. 1984.
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Metrologia
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De Marchi, A.1
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Premoli, A.3
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