| 1 | Abbate, S.F., Armstrong, J.W., Asmar, S.W., Barbinis, E., Bertotti, B., Fleischman, D.U., Gatti, M., Goltz, G.L., Herrera, R.G., Iess, L., Lee, K.J., Ray, T.L., Tinto, M., Tortora, P., and Wahlquist, H.D., “The Cassini gravitational wave experiment”, in Cruise, M., and Saulson, P., eds., Gravitational-Wave Detection, Proc. of SPIE, vol. 4856, pp. 90–97, (The International Society for Optical Engineering, New York, U.S.A., 2003). | |
| 2 | Anderson, A.J., “Probability of Long Period Gravitational Radiation”, Nature, 229, 547–548, (1971). | |
| 3 | Anderson, J.D., Armstrong, J.W., Campbell, J.K., Estabrook, F.B., Krisher, T.P., and Lau,
E.L., “Gravitation and Celestial Mechanics Investigations with Galileo”, Space Sci. Rev., 60,
591–610, (1992).
ADS: |
|
| 4 | Anderson, J.D., Armstrong, J.W., Estabrook, F.B., Hellings, R.W., Lau, E.K., and Wahlquist,
H.D., “Pioneer 10 search for gravitational waves – no evidence for coherent radiation from
Geminga”, Nature, 308, 158–160, (1984).
ADS: |
|
| 5 | Anderson, J.D., Armstrong, J.W., and Lau, E.K., “Upper Limits for Gravitational Radiation
from Supermassive Coalescing Binaries”, Astrophys. J., 408, 287–292, (1993).
ADS: |
|
| 6 | Anderson, J.D., and Mashhoon, B., “Pioneer 10 Search for Gravitational Waves – Limits on a
Possible Isotropic Cosmic Background in the Microhertz Region”, Astrophys. J., 290, 445–448,
(1985).
ADS: |
|
| 7 | Armstrong, J.W., “Spacecraft Gravitational Wave Experiments”, in Schutz, B.F., ed., Gravitational Wave Data Analysis, Proceedings of the NATO Advanced Research Workshop, held at Dyffryn House, St. Nichols, Cardiff, Wales, 6 – 9 July 1987, NATO ASI Series C, vol. 253, pp. 153–172, (Kluwer, Dordrecht, Netherlands; Boston, U.S.A., 1989). | |
| 8 | Armstrong, J.W., “Gravitational Wave Search With the Clock Mission”, in Maleki, L., ed., Gravitational Wave Search with the Clock Mission, Proceedings of the Workshop on the Scientific Applications of Clocks in Space, Pasadena, California, 7 – 8 November 1996, JPL Publications, vol. 97-15, pp. 33–40, (Jet Propulsion Laboratory, Pasadena, U.S.A., 1997). | |
| 9 | Armstrong, J.W., “Radio Wave Phase Scintillation and Precision Doppler Tracking of Spacecraft”, Radio Sci., 33, 1727–1738, (1998). | |
| 10 | Armstrong, J.W., “Low-Frequency Gravitational Wave Searches Using Spacecraft Doppler
Tracking”, lecture notes, Caltech, (2000). URL (cited on 5 August 2005):
|
|
| 11 | Armstrong, J.W., “The Cassini Gravitational Wave Experiment”, lecture notes, Caltech,
(2002). URL (cited on 5 August 2005):
|
|
| 12 | Armstrong, J.W., “Doppler Tracking of Spacecraft for Gravitational Wave Detection in the
Low-Frequency Band”, lecture notes, Caltech, (2002). URL (cited on 5 August 2005):
|
|
| 13 | Armstrong, J.W., Bertotti, B., Estabrook, F.B., Iess, L., and Wahlquist, H.D., “The Galileo/Mars Observer/Ulysses Coincidence Experiment”, in Coccia, E., Veneziano, G., and Pizzella, G., eds., Gravitational Waves, Proceedings of the Second Edoardo Amaldi Conference on Gravitational Waves, CERN, 1 – 4 July 1997, pp. 159–167, (World Scientific, Singapore; River Edge, U.S.A., 1998). | |
| 14 | Armstrong, J.W., Estabrook, F.B., Asmar, S.W., Iess, L., and Tortora, P., “Reducing Antenna
Mechanical Noise in Precision Doppler Tracking”, IPN Progress Report, 2006, 42-165, (2006).
URL (cited on 1 December 2007):
|
|
| 15 | Armstrong, J.W., Estabrook, F.B., Asmar, S.W., Iess, L., and Tortora, P., “Reducing Antenna
Mechanical Noise in Precision Doppler Tracking”, Radio Sci., submitted, (2008). Related online
version (cited on 1 December 2007):
|
|
| 16 | Armstrong, J.W., Estabrook, F.B., and Tinto, M., “Time-Delay Interferometry for Space-Based
Gravitational Wave Searches”, Astrophys. J., 527, 814–826, (1999).
ADS: |
|
| 17 | Armstrong, J.W., Estabrook, F.B., and Tinto, M., “Sensitivities of Alternate LISA
Configurations”, Class. Quantum Grav., 18, 4059–4065, (2001).
ADS: |
|
| 18 | Armstrong, J.W., Estabrook, F.B., and Wahlquist, H.D., “A Search for Sinusoidal Gravitational Radiation in the Period Range 30–2000 seconds”, Astrophys. J., 318, 536–541, (1987). | |
| 19 | Armstrong, J.W., Iess, L., Tortora, P., and Bertotti, B., “Stochastic Gravitational Wave
Background: Upper Limits in the 10−6 to 10−3 Hz Band”, Astrophys. J., 599, 806–813, (2003).
ADS: |
|
| 20 | Armstrong, J.W., and Sramek, R.A., “Observations of Tropospheric Phase Scintillations at 5 GHz on Vertical Paths”, Radio Sci., 17, 1579–1586, (1982). | |
| 21 | Armstrong, J.W., Woo, R., and Estabrook, F.B., “Interplanetary Phase Scintillation and the
Search for Very Low Frequency Gravitational Radiation”, Astrophys. J., 230, 570–574, (1979).
ADS: |
|
| 22 | Asmar, S.W., Armstrong, J.W., Iess, L., and Tortora, P., “Spacecraft Doppler Tracking: Noise Budget and Accuracy Achievable in Precision Radio Science Observations”, Radio Sci., 40, (2005). | |
| 23 | Barnes, J.A., Chi, A.R., Cutler, L.S., Healey, D.J., Leeson, D.B., McGuniga, T.E., Mullen, J.A., Smith, W.L., Sydnor, R.L., Vessot, R.F.C., and Winkler, G.M.R., “Characterization of Frequency Stability”, IEEE Trans. Instrum. Meas., 20, 105–120, (1971). | |
| 24 | Bender, P.L., Brillet, A., Ciufolini, I., Cruise, A.M., Cutler, C., Danzmann, K., Fidecaro, F., Folkner, W.M., Hough, J., McNamara, P.W., Peterseim, M., Robertson, D., Rodrigues, M., Rüdiger, A., Sandford, M., Schäfer, G., Schilling, R., Schutz, B.F., Speake, C.C., Stebbins, R.T., Sumner, T.J., Touboul, P., Vinet, J.-Y., Vitale, S., Ward, H., and Winkler, W. (LISA Study Team), LISA. Laser Interferometer Space Antenna for the detection and observation of gravitational waves. An international project in the field of Fundamental Physics in Space. Pre-Phase A report, MPQ-233, (Max-Planck-Institut für Quantenoptik, Garching, Germany, 1998). | |
| 25 | Bertotti, B., Ambrosini, R., Armstrong, J.W., Comoretto, G., Giampieri, G., Iess, L., Koyama,
Y., Messeri, A., Vecchio, A., and Wahlquist, H.D., “Search for gravitational wave trains with
the spacecraft ULYSSES”, Astron. Astrophys., 296, 13–25, (1995).
ADS: |
|
| 26 | Bertotti, B., Ambrosini, R., Asmar, S.W., Brenkle, J.P., Comoretto, G., Giampieri, G., Iess,
L., Messeri, A., and Wahlquist, H.D., “The gravitational wave experiment”, Astron. Astrophys.
Suppl., 92, 431–440, (1992).
ADS: |
|
| 27 | Bertotti, B., and Carr, B.J., “The Prospects of Detecting Gravitational Background Radiation
by Doppler Tracking Interplanetary Spacecraft”, Astrophys. J., 236, 1000–1011, (1980).
ADS: |
|
| 28 | Bertotti, B., Comoretto, G., and Iess, L., “Doppler tracking of spacecraft with multi-frequency
links”, Astron. Astrophys., 269, 608–616, (1993).
ADS: |
|
| 29 | Bertotti, B., and Iess, L., “Doppler Search for a Gravitational Background Radiation with Two
Spacecraft”, Gen. Relativ. Gravit., 17, 1043–1058, (1985).
ADS: |
|
| 30 | Bertotti, B., Iess, L., and Tortora, P., “A test of general relativity using radio links with the
Cassini spacecraft”, Nature, 425, 374–376, (2003).
ADS: |
|
| 31 | Bertotti, B., Vecchio, A., and Iess, L., “Gravitational Waves From Coalescing Binaries and
Doppler Experiments”, Phys. Rev. D, 59, 082001, (1999). Related online version (cited on 5
August 2005):
|
|
| 32 | Bracewell, R., The Fourier Transform and Its Applications, (McGraw-Hill, New York, U.S.A., 1965). | |
| 33 | Caltech, “CaJAGWR website”, project homepage. URL (cited on 5 August 2005):
|
|
| 34 | Camp, J.B., and Cornish, N.J., “Gravitational Wave Astronomy”, Annu. Rev. Nucl. Part. Sci.,
54, 525–577, (2004).
ADS: |
|
| 35 | Chen, G., and Herring, T.A., “Effects of Atmospheric Azimuthal Asymmetry on the Analysis
of Space Geodetic Data”, J. Geophys. Res., 102(B9), 20489–20502, (1997).
ADS: |
|
| 36 | Cliche, J.-F., and Shillue, B., “Precision Timing Control for Radioastronomy: Maintaining Femtosecond Synchronization in the Atacama Large Millimeter Array”, IEEE Contr. Syst. Mag., 26, 19–26, (2006). | |
| 37 | Coles, W.A., “Interplanetary Scintillation”, Space Sci. Rev., 21, 411–425, (1978). | |
| 38 | Comoretto, G., Bertotti, B., Iess, L., and Ambrosini, R., “Doppler Experiments With the Cassini Radio System”, Nuovo Cimento, 15, 1193–1198, (1992). | |
| 39 | Davies, R.W., “Issues in Gravitational Wave Detection with Space Missions”, in Gravitational Waves and Radiations, Proceedings of the international conference, Université de Paris VII, Paris, France, June 18 – 22, 1973, Colloques Internationaux du CNRS, vol. 220, pp. 33–45, (CNRS, Paris, France, 1974). | |
| 40 | Dixon, R.S., and Klein, C.A., “On the Detection of Unknown Signals”, in Shostak, G.S., ed., Third Decennial US–USSR Conference on SETI, University of California, Santa Cruz, August 5 – 9, 1991, ASP Conference Series, vol. 47, pp. 129–140, (Astronomical Society of the Pacific, San Francisco, U.S.A., 1993). | |
| 41 | Dobrowolny, M., and Iess, L., “Interplanetary Plasma Turbulence and the Doppler Detection
of a Gravitational Wave Background”, Astron. Astrophys., 157, 346–352, (1986).
ADS: |
|
| 42 | Edlund, J.A., Tinto, M., Królak, A., and Nelemans, G., “White-dwarf–white-dwarf galactic
background in the LISA data”, Phys. Rev. D, 71, 122003, 1–16, (2005).
ADS: |
|
| 43 | Estabrook, F.B., “Gravitational Wave Detection with the Solar Probe: II. The Doppler Tracking Method”, in Neugebauer, M., and Davies, R.W., eds., A Close-Up of the Sun, Proceedings of the Solar Probe Science Workshop, Pasadena, California, 22 – 23 May 1978, JPL Publications, vol. 78-70, pp. 441–449, (Jet Propulsion Laboratory, Pasadena, U.S.A., 1978). | |
| 44 | Estabrook, F.B., “Response functions of free mass gravitational wave antennas”, Gen. Relativ.
Gravit., 17, 719–724, (1985).
ADS: |
|
| 45 | Estabrook, F.B., and Armstrong, J.W., “Three-Way Doppler Data for Gravitational Wave Searches”, unknown status, (1983). Jet Propulsion Laboratory Interoffice Memorandum, 4/4/83. | |
| 46 | Estabrook, F.B., Armstrong, J.W., Tinto, M., and Folkner, W.M., “SyZyGy: A Straight
Interferometric Spacecraft System for Gravity Wave Observations”, Phys. Rev. D, 68, 062001,
(2003). Related online version (cited on 5 August 2005):
|
|
| 47 | Estabrook, F.B., Hellings, R.W., Wahlquist, H.D., and Wolff, R.S., “Gravitational Radiation Detection with Spacecraft Doppler Tracking: Limiting Sensitivities and Prospective Missions”, in Smarr, L.L., ed., Sources of Gravitational Radiation, Proceedings of the Battelle Seattle Workshop, July 24 – August 4, 1978, pp. 37–48, (Cambridge University Press, Cambridge, U.K.; New York, U.S.A., 1979). | |
| 48 | Estabrook, F.B., Tinto, M., and Armstrong, J.W., “Time-delay analysis of LISA gravitational
wave data: Elimination of spacecraft motion effects”, Phys. Rev. D, 62, 042002, 1–8, (2000).
ADS: |
|
| 49 | Estabrook, F.B., and Wahlquist, H.D., “Response of Doppler spacecraft tracking to
gravitational radiation”, Gen. Relativ. Gravit., 6, 439–447, (1975).
ADS: |
|
| 50 | Freitag, M., “Gravitational Waves From Stars Orbiting the Sagittarius A* Black Hole”,
Astrophys. J. Lett., 583, L21–L24, (2003).
ADS: |
|
| 51 | Giampieri, G., and Vecchio, A., “Limits on the Gravitational-Wave Background from Spacecraft
Doppler Experiments”, Class. Quantum Grav., 27, 793–811, (1995).
ADS: |
|
| 52 | Groth, E.J., “Probability Distributions Related to Power Spectra”, Astrophys. J. Suppl. Ser.,
29, 285–302, (1975).
ADS: |
|
| 53 | Hasselmann, K., Munk, W., and MacDonald, G., “Bispectra of Ocean Waves”, in Rosenblatt, M., ed., Proceedings of the Symposium on Time Series Analysis, Brown University, June 11 – 14, 1962, pp. 125–139, (Wiley, New York, U.S.A., 1963). | |
| 54 | Hellings, R.W., “Testing relativistic theories of gravity with spacecraft-Doppler gravity-wave
detection”, Phys. Rev. D, 17, 3158–3163, (1978).
ADS: |
|
| 55 | Hellings, R.W., “Detecting a Gravitational-Radiation Background Using Spacecraft Doppler
Tracking”, Phys. Rev. Lett., 43, 470–473, (1979).
ADS: |
|
| 56 | Hellings, R.W., personal communication, (1983). | |
| 57 | Hellings, R.W., Callahan, P.S., Anderson, J.D., and Moffet, A.T., “Spacecraft-Doppler
gravity-wave detection. II. Results”, Phys. Rev. D, 23, 844–851, (1981).
ADS: |
|
| 58 | Helstrom, C.W., Statistical Theory of Signal Detection, International Series of Monographs in Electronics and Instrumentation, vol. 9, (Pergamon Press, Oxford, U.K.; New York, U.S.A., 1968), 2nd edition. | |
| 59 | Iess, L., Anderson, J.D., Asmar, S.W., Barbinis, E., Bertotti, B., Fleischman, D.U., Gatti, M.S., Goltz, G.L., Herrera, R.G., Lau, E., and Oudrhiri, K., “The Cassini solar conjunction experiment: a new test of general relativity”, in Proceedings of the IEEE Aerospace Conference 2003, Big Sky, MT, March 8 – 15, 2003, IEEE Conference Proceedings, pp. 1–211–223, (Institute of Electrical and Electronics Engineers, Piscataway, U.S.A., 2003). | |
| 60 | Iess, L., and Armstrong, J.W., “Spacecraft Doppler Experiments”, in Ciufolini, I., and Fidecaro, F., eds., Gravitational Waves: Sources and Detectors, Proceedings of the international conference, Cascina, Italy, 19 – 23 March, 1996, pp. 323–329, (World Scientific, Singapore; River Edge, U.S.A., 1997). | |
| 61 | Iess, L., Armstrong, J.W., Bertotti, B., Wahlquist, H.D., and Estabrook, F.B., “Search for Gravitational Wave Bursts by Simultaneous Doppler Tracking of Three Interplanetary Spacecraft”, Paper presented at 15th International Conference on General Relativity and Gravitation, Pune, India, December 16 – 21 1997, conference paper, (1997). | |
| 62 | Iess, L., Bonifazi, P., Bertotti, B., and Comoretto, G., “Differential Doppler Tracking of Interplanetary Spacecraft”, Nuovo Cimento C, 10, 235–246, (1987). | |
| 63 | Iess, L., Dobrowolny, M., and Bertotti, B., “Plasma effects on Doppler measurements of
interplanetary spacecraft. I - Discontinuities and waves”, Astron. Astrophys., 121, 203–210,
(1983).
ADS: |
|
| 64 | Iess, L., Giampieri, G., Anderson, J.D., and Bertotti, B., “Doppler measurement of the solar gravitational deflection”, Class. Quantum Grav., 16, 1487–1502, (1999). | |
| 65 | Ishimaru, A., Wave Propagation and Scattering in Random Media, (Academic Press, New York, U.S.A., 1978). | |
| 66 | Jaffe, A.H., and Backer, D.C., “Gravitational Waves Probe the Coalescence Rate of Massive
Black Hole Binaries”, Astrophys. J., 583, 616–631, (2003).
ADS: |
|
| 67 | Jenkins, G.M., and Watts, D.G., Spectral Analysis and Its Applications, (Holden-Day, San Francisco, U.S.A., 1969). | |
| 68 | Jet Propulsion Laboratory, “Cassini-Huygens Mission to Saturn & Titan”, project homepage.
URL (cited on 5 August 2005):
|
|
| 69 | Study of the Laser Interferometer Space Antenna – Final Technical Report, (Jet Propulsion
Laboratory, California Institute of Technology, Pasadena, U.S.A., 2000). Related online version
(cited on 5 August 2005):
|
|
| 70 | Kaufmann, W.J., “Redshift Fluctuations Arising from Gravitational Waves”, Nature, 327, 157–159, (1970). | |
| 71 | Keihm, S.J., “Water Vapor Radiometer Measurements of the Tropospheric Delay Fluctuations
at Goldstone Over a Full Year”, TDA Progress Report, 1995, 42-122, (1995). URL (cited on 5
August 2005):
|
|
| 72 | Keihm, S.J., Tanner, A., and Rosenberger, H., “Measurements and Calibration of Tropospheric
Delay at Goldstone From the Cassini Media Calibration System”, IPN Progress Report, 2004,
42-158, (2004). URL (cited on 5 August 2005):
|
|
| 73 | Kellerman, K., and Sheets, B., eds., Serendipitous Discoveries in Radio Astronomy, Proceedings of a Workshop held at NRAO, Greenbank, U.S.A., May 4 – 6, 1983, (National Radio Astronomy Observatory, Green Bank, U.S.A., 1983). | |
| 74 | Kliore, A., Anderson, J.D., Armstrong, J.W., Asmar, S.W., Hamilton, C.L., Rappaport, N.J.,
Wahlquist, H.D., Ambrosini, R., Flasar, F.M., French, R.G., Iess, L., Marouf, E.A., and Nagy,
A.F., “Cassini Radio Science”, Space Sci. Rev., 115, 1–70, (2004).
ADS: |
|
| 75 | Lovelace, R.V.E., Theory and Analysis of Interplanetary Scintillations, Ph.D. Thesis, (Cornell University, Ithaca, U.S.A., 1970). | |
| 76 | MacDonald, G.J., “Spectral Analysis of Time Series Generated by Nonlinear Processes”, Rev. Geophys., 27, 449–469, (1989). | |
| 77 | MacMillan, D.S., and Gipson, J.M., “Atmospheric Pressure Loading Parameters from Very
Long Baseline Interferometry Observations”, J. Geophys. Res., 99(B9), 18081–18088, (1994).
ADS: |
|
| 78 | Maleki, L., personal communication, (2005). | |
| 79 | Mashhoon, B., and Grishchuk, L.P., “On the Detection of a Stochastic Background of
Gravitational Radiation by the Doppler Tracking of Spacecraft”, Astrophys. J., 236, 990–999,
(1980).
ADS: |
|
| 80 | Misner, C.W., Thorne, K.S., and Wheeler, J.A., Gravitation, (W.H. Freeman, San Francisco, U.S.A., 1973). | |
| 81 | Otoshi, T.Y., and Franco, M.M., “Measurements of a Deep Space Station Fractional Frequency Stability to the 10−15 Level”, IEEE Trans. Instrum. Meas., 41, 577–587, (1992). | |
| 82 | Otoshi, T.Y., Franco, M.N., and Lutes, G.F., “The Fractional Frequency Stability of a 34-m Diameter Beam Waveguide Antenna”, Proc. IEEE, 82, 788–795, (1994). | |
| 83 | Papoulis, A., Probability, Random Variables, and Stochastic Processes, (McGraw-Hill, New York, U.S.A., 1965). | |
| 84 | Percival, D.B., and Walden, A.T., Spectral Analysis for Physical Applications, (Cambridge University Press, Cambridge, U.K., 1993). | |
| 85 | Press, W.H., and Thorne, K.S., “Gravitational-Wave Astronomy”, Annu. Rev. Astron.
Astrophys., 10, 335–373, (1972).
ADS: |
|
| 86 | Prince, T.A., Tinto, M., Larson, S.L., and Armstrong, J.W., “LISA optimal sensitivity”, Phys.
Rev. D, 66, 122002, 1–7, (2002).
ADS: |
|
| 87 | Rajagopal, M., and Romani, R.W., “Ultra–Low-Frequency Gravitational Radiation from
Massive Black Hole Binaries”, Astrophys. J., 446, 543–549, (1995).
ADS: |
|
| 88 | Resch, G.M., Bar-Server, Y., Keihm, S.J., Kroger, P., Linfield, R.P., Mahoney, M.J., Tanner, A.,
and Teitelbaum, L.P., “Atmospheric calibration for precision Doppler tracking of spacecraft”,
Planet. Space Sci., 46, 1257–1261, (1998).
ADS: |
|
| 89 | Resch, G.M., Hogg, D.E., and Napier, P.J., “Radiometric Correction of Atmospheric Path-Length Fluctuations in Interferometric Experiments”, Radio Sci., 19, 411–422, (1984). | |
| 90 | Resch, G.M., Keihm, S.J., Lanyi, G.E., Linfield, R.P., Naudet, C.J., Riley, A.L., Rosenberger,
H.W., and Tanner, A.B., “The Media Calibration System for Cassini Radio Science: Part III”,
IPN Progress Report, 2002, 42-148, (2002). URL (cited on 5 August 2005):
|
|
| 91 | Rice, S.O., “Mathematical Analysis of Random Noise”, in Wax, N., ed., Selected Papers on Noise and Stochastic Processes, pp. 133–294, (Dover, New York, U.S.A., 1954). | |
| 92 | Rickett, B.J., “Interstellar Scattering and Scintillation of Radio Waves”, Annu. Rev. Astron.
Astrophys., 15, 479–504, (1977).
ADS: |
|
| 93 | Riley, A.L., Antsos, D., Armstrong, J.W., Kinman, P., Wahlquist, H.D., Bertotti, B., Comoretto, G., Pernice, B., Carnicella, G., Giordani, R., and Spazio, S., Cassini Ka-Band Precision Doppler and Enhanced Telecommunications System Study, (NASA/JPL and Agenzia Spaziale Italiana, Pasadena, U.S.A.; Rome, Italy, 1990). | |
| 94 | Rowan, S., and Hough, J., “Gravitational Wave Detection by Interferometry (Ground and
Space)”, Living Rev. Relativity, 3, lrr-2000-3, (2000). URL (cited on 5 August 2005):
http://www.livingreviews.org/lrr-2000-3. |
|
| 95 | Shaddock, D.A., “Operating LISA as a Sagnac interferometer”, Phys. Rev. D, 69, 022001, 1–6,
(2004).
ADS: |
|
| 96 | Smith, S., “Algorithm to search for gravitational radiation from coalescing binaries”, Phys.
Rev. D, 36, 2901–2904, (1987).
ADS: |
|
| 97 | Snel, R.C., Mangum, J.G., and Baars, J.W.M., “Study of the Dynamics of Large Reflector
Antennas With Accelerometers”, IEEE Trans. Ant. Prop., 49, 84–101, (2007). Related online
version (cited on 1 December 2007):
|
|
| 98 | Sovers, O.J., Fanselow, J.L., and Jacobs, C.S., “Astrometry and Geodesy with Radio
Interferometry: Experiments, Models, Results”, Rev. Mod. Phys., 70, 1393–1454, (1998).
ADS: |
|
| 99 | Takamoto, M., Hong, F.-L., Higashi, R., and Katori, H., “An optical lattice clock”, Nature, 435, 321–324, (2005). | |
| 100 | Tatarski, V.I., Wave Propagation in a Turbulent Medium, (Dover, New York, U.S.A., 1961). | |
| 101 | Thomson, D.J., “Spectrum Estimation and Harmonic Analysis”, Proc. IEEE, 70, 1055–1096, (1982). | |
| 102 | Thorne, K.S., “Gravitational radiation”, in Hawking, S.W., and Israel, W., eds., Three Hundred Years of Gravitation, pp. 330–458, (Cambridge University Press, Cambridge, U.K.; New York, U.S.A., 1987). | |
| 103 | Thorne, K.S., and Braginsky, V.B., “Gravitational-wave bursts from nuclei of distant galaxies
and quasars: Proposal for detection using doppler tracking of interplanetary spacecraft”,
Astrophys. J., 204, L1–L6, (1976).
ADS: |
|
| 104 | Tinto, M., “Spacecraft Doppler tracking as a xylophone detector of gravitational radiation”,
Phys. Rev. D, 53, 5354–5364, (1996).
ADS: |
|
| 105 | Tinto, M., “The Cassini Ka-band gravitational wave experiments”, Class. Quantum Grav., 19, 1767–1773, (2002). | |
| 106 | Tinto, M., and Armstrong, J.W., “Coincidence Probabilities for Spacecraft Gravitational Wave
Experiments: Massive Coalescing Binaries”, Astrophys. J., 372, 545–553, (1991).
ADS: |
|
| 107 | Tinto, M., and Armstrong, J.W., “Spacecraft Doppler tracking as a narrow-band detector of
gravitational radiation”, Phys. Rev. D, 58, 042002, (1998).
ADS: |
|
| 108 | Tinto, M., Armstrong, J.W., and Estabrook, F.B., “Discriminating a gravitational wave
background from instrumental noise in the LISA detector”, Phys. Rev. D, 63, 021101, 1–3,
(2001).
ADS: |
|
| 109 | Tinto, M., and Dhurandhar, S.V., “Time-Delay Interferometry”, Living Rev. Relativity, 8,
lrr-2005-4, (2005). URL (cited on 5 August 2005):
http://www.livingreviews.org/lrr-2005-4. |
|
| 110 | Tinto, M., Estabrook, F.B., and Armstrong, J.W., Time-Delay Interferometry and LISA’s
Sensitivity to Sinusoidal Gravitational Waves, (Jet Propulsion Laboratory, California Institute
of Technology, Pasadena, U.S.A., 2002). Related online version (cited on 5 August 2005):
|
|
| 111 | Tinto, M., Estabrook, F.B., and Armstrong, J.W., “Time-delay interferometry for LISA”, Phys.
Rev. D, 65, 082003, 1–12, (2002).
ADS: |
|
| 112 | Tinto, M., Estabrook, F.B., and Armstrong, J.W., “Time-delay interferometry with moving
spacecraft arrays”, Phys. Rev. D, 69, 082001, 1–10, (2004). Related online version (cited on 5
August 2005):
|
|
| 113 | Tortora, P., Iess, L., Bordi, J.J., Ekelund, J.E., and Roth, D.C., “Precise Cassini Navigation During Solar Conjunctions Through Multifrequency Plasma Calibrations”, J. Guid. Control Dyn., 27, 251–257, (2004). | |
| 114 | Tortora, P., Iess, L., and Ekelund, J.E., “Accurate Navigation of Deep Space Probes using
Multifrequency Links: the Cassini Breakthrough During Solar Conjunction Experiments”, IAF
abstracts, 34th COSPAR Scientific Assembly, The Second World Space Congress, held 10 – 19
October, 2002 in Houston, TX, USA, p.Q-2-03, conference paper.
ADS: |
|
| 115 | Vallisneri, M., “Synthetic LISA: Simulating Time Delay Interferometry in a Model LISA”,
Phys. Rev. D, 71, 022001, (2005). Related online version (cited on 5 August 2005):
|
|
| 116 | van Dam, T.M., Blewitt, G., and Heflin, M.B., “Atmospheric Pressure Loading Effects
on Global Positioning System Coordinate Determinations”, J. Geophys. Res., 99(B12),
23939–23950, (1994).
ADS: |
|
| 117 | Vecchio, A., Bertotti, B., and Iess, L., “Coalescing Binaries and Doppler Experiments”, (1997).
URL (cited on 5 August 2005):
|
|
| 118 | Vessot, R.F.C., and Levine, M.W., “A Time-Correlated Four-Link Doppler Tracking System”, in Neugebauer, M., and Davies, R.W., eds., A Close-Up of the Sun, Proceedings of the Solar Probe Science Workshop, Pasadena, California, 22 – 23 May 1978, JPL Publications, vol. 78-70, pp. 457–497, (Jet Propulsion Laboratory, Pasadena, U.S.A., 1978). | |
| 119 | Vessot, R.F.C., Levine, M.W., Mattison, E.M., Blomberg, E.L., Hoffman, T.E., Nystrom, G.U.,
Farrell, B.F., Decher, R., Eby, P.B., Baugher, C.R., Watts, J.W., Teuber, D.L., and Wills, F.D.,
“Test of Relativistic Gravitation with a Space-Borne Hydrogen Maser”, Phys. Rev. Lett., 45,
2081–2084, (1980).
ADS: |
|
| 120 | Wahlquist, H.D., “The Doppler response to gravitational waves from a binary star source”,
Gen. Relativ. Gravit., 19, 1101–1113, (1987).
ADS: |
|
| 121 | Wahlquist, H.D., Anderson, J.D., Estabrook, F.B., and Thorne, K.S., “Recent JPL Work on Gravity Wave Detection and Solar System Relativity Experiments”, in International Meeting on Experimental Gravitation, Simposio internazionale sulla gravitazione sperimentale, Pavia, Italy, 17 – 20 September 1976, Atti dei Convegni Lincei, vol. 34, pp. 335–350, (Accad. Naz. dei Lincei, Rome, Italy, 1977). | |
| 122 | Won, L., Hanover, G., Belenky, R., and Lee, A., “Supporting the Gravity Wave Experiment: Three AACS Topics”, unknown status, (2001). Jet Propulsion Laboratory, Cassini Project presentation October 18, 2001. | |
| 123 | Won, L., and Lee, A., “AACS Support for the Gravity Wave Experiment”, unknown status, (2001). Jet Propulsion Laboratory Interoffice Memorandum SCO-01-044, 10/29/01. | |
| 124 | Woo, R., and Armstrong, J.W., “Spacecraft Radio Scattering Observations of the Power Spectrum of Electron Density Fluctuations in the Solar Wind”, J. Geophys. Res., 84, 7288–7296, (1979). | |
| 125 | Wyithe, J.S.B., and Loeb, A., “Low-Frequency Gravitational Waves from Massive Black Hole
Binaries: Predictions for LISA and Pulsar Timing Arrays”, Astrophys. J., 590, 691–706, (2003).
ADS: |
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