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1
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0032679901
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Complex permittivity measurements of some crystalline materials at microwave frequencies
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J. Krupka, K. Derzakowski, M.E. Tobar, J.G. Hartnett, and R.G. Geyer, "Complex permittivity measurements of some crystalline materials at microwave frequencies," Meas. Sci. Tech., vol. 10, pp. 387-392, 1999.
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Meas. Sci. Tech.
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Krupka, J.1
Derzakowski, K.2
Tobar, M.E.3
Hartnett, J.G.4
Geyer, R.G.5
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2
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0033359335
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Whispering gallery modes for complex permittivity measurements of ultra-low loss dielectric materials
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J. Krupka, K. Derzakowski, A. Abramowicz, M. Tobar, R. Geyer, "Whispering gallery modes for complex permittivity measurements of ultra-low loss dielectric materials," IEEE Trans. MTT., vol. 47, pp. 752-9, 1999.
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IEEE Trans. MTT.
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Krupka, J.1
Derzakowski, K.2
Abramowicz, A.3
Tobar, M.4
Geyer, R.5
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3
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0001616516
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Anisotropic complex permittivity measurements of mono-crystalline rutile between 10-300 kelvin
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M. Tobar, J. Krupka, E. Ivanov, and R. Woode, "Anisotropic Complex Permittivity Measurements of Mono-Crystalline Rutile Between 10-300 Kelvin," J. Appl. Phys, vol. 83, pp. 1604-9, 1998.
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Tobar, M.1
Krupka, J.2
Ivanov, E.3
Woode, R.4
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4
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0030418784
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Dielectric frequency-temperature compensation of high quality sapphire dielectric resonators
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M. Tobar, J. Krupka, R. Woode, and E. Ivanov, "Dielectric frequency-temperature compensation of high quality sapphire dielectric resonators," Proc. IEEE Int. Freq. Cont. Symp., pp. 799-806, 1996.
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Proc. IEEE Int. Freq. Cont. Symp.
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Tobar, M.1
Krupka, J.2
Woode, R.3
Ivanov, E.4
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5
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0029377624
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Temperature-compensated sapphire resonator for ultra-stable oscillator capability at temperature above 77 K
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G.J. Dick, D.G. Santiago, and R.T. Wang, "Temperature-compensated sapphire resonator for ultra-stable oscillator capability at temperature above 77K," IEEE Trans. on UFFC, vol. 42, pp. 815-819, 1995.
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Dick, G.J.1
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Wang, R.T.3
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6
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0032645816
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4+ doped sapphire whispering gallery mode resonators
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4+ doped sapphire whispering gallery mode resonators," IEEE Trans. on Ultrason. Ferroelec. Freq. Contr., vol. 46, pp. 993-1000, 1999.
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Hartnett, J.G.1
Tobar, M.E.2
Mann, A.G.3
Ivanov, E.N.4
Krupka, J.5
Geyer, R.6
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7
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0033314909
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Future trends in the development of ultra-low noise microwave oscillators with interferometric signal processing
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Besançon, France
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E.N. Ivanov and M.E. Tobar, "Future trends in the development of ultra-low noise microwave oscillators with interferometric signal processing," in Proc. 1999 IEEE Freq. Contr. Symp./13th IEE European Frequency and Time Forum, Besançon, France, pp. 552-556, 1999.
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Proc. 1999 IEEE Freq. Contr. Symp./13th IEE European Frequency and Time Forum
, pp. 552-556
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Ivanov, E.N.1
Tobar, M.E.2
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8
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0035161401
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Novel temperature control of a sapphire loaded cavity oscillator from the difference frequency of WGE and WGH modes
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M.E. Tobar, E.N. Ivanov, J.G. Hartnett, and C.R. Locke, "Novel temperature control of a sapphire loaded cavity oscillator from the difference frequency of WGE and WGH modes," in Proc. 2001 IEEE Int. Freq. Contr. Symp., 2001.
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Proc. 2001 IEEE Int. Freq. Contr. Symp.
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Tobar, M.E.1
Ivanov, E.N.2
Hartnett, J.G.3
Locke, C.R.4
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9
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0011784868
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Design of a cryogenic dual-mode resonator for a fly-wheel oscillator for a cesium frequency standard
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M.E. Tobar, E.N. Ivanov, J.G. Hartnett, D. Cros, and P. Bilski, "Design of a cryogenic dual-mode resonator for a fly-wheel oscillator for a cesium frequency standard," IEEE Trans. on Ultrason. Ferroelec. and Freq. Control, vol. 49, 2002.
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Tobar, M.E.1
Ivanov, E.N.2
Hartnett, J.G.3
Cros, D.4
Bilski, P.5
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10
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0037102063
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Novel difference frequency technique to achieve frequency-temperature compensation in a whispering-gallery sapphire resonator-oscillator
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M.E. Tobar, E.N. Ivanov, C. Locke, and J. Hartnett, "Novel difference frequency technique to achieve frequency-temperature compensation in a whispering-gallery sapphire resonator-oscillator," submitted to Electron. Lett., 2002.
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Electron. Lett.
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Tobar, M.E.1
Ivanov, E.N.2
Locke, C.3
Hartnett, J.4
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12
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0029218908
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Microwave oscillators incorporating cryogenic sapphire dielectric resonators
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R.C. Taber and C.A. Flory, "Microwave oscillators incorporating cryogenic sapphire dielectric resonators," IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, vol. 42, pp. 111-119, 1995.
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IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control
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, pp. 111-119
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Taber, R.C.1
Flory, C.A.2
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13
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0032319719
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Cryocooled sapphire oscillator with ultra-high stability
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G.J. Dick, R.T. Wang, and R.T. Tjoelker, "Cryocooled sapphire oscillator with ultra-high stability," Proc. IEEE Int. Freq. Contr. Symp., vol. 52, pp. 528-533, 1998.
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Dick, G.J.1
Wang, R.T.2
Tjoelker, R.T.3
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14
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0029292441
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Power stabilized cryogenic sapphire oscillator
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A.N. Luiten, A.G. Mann, and D.G. Blair, "Power Stabilized Cryogenic Sapphire Oscillator," IEEE Trans. Instr. Meas., vol. 44, pp. 132-135, 1995.
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Luiten, A.N.1
Mann, A.G.2
Blair, D.G.3
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15
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0001536266
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Quantum projection noise in an atomic fountain: A high stability cesium frequency standard
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G. Santarelli et. al., "Quantum projection noise in an atomic fountain: A high stability cesium frequency standard," Phys. Rev. Lett., vol. 82, pp. 4619-4622, 1999.
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Phys. Rev. Lett.
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Santarelli, G.1
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16
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0036194563
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Temperature fluctuations in a solid-nitrogen cooled secondary frequency standard
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J.G. Hartnett, M.E. Tobar, E.N. Ivanov, P. Bilski, "Temperature fluctuations in a solid-nitrogen cooled secondary frequency standard," Cryogenics, vol. 42, pp. 45-48, 2002.
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Cryogenics
, vol.42
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Hartnett, J.G.1
Tobar, M.E.2
Ivanov, E.N.3
Bilski, P.4
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17
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0034239050
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Microwave secondary frequency standards: Stability limits due to intrinsic fluctuations in frequency discriminator
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J.G. Hartnett, E.N. Ivanov, and M.E. Tobar, "Microwave secondary frequency standards: Stability limits due to intrinsic fluctuations in frequency discriminator," IEEE MGW Let., vol. 10, pp. 328-330, 2000.
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IEEE MGW Let.
, vol.10
, pp. 328-330
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Hartnett, J.G.1
Ivanov, E.N.2
Tobar, M.E.3
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