United States Naval Observatory

The United States Naval Observatory (USNO) is one of the oldest scientific agencies in the United States, with a primary mission[1] to produce Positioning, Navigation and Timing (PNT)[2] for the United States Navy and the United States Department of Defense. Located in Northwest Washington, D.C. at the Northwestern end of Embassy Row, it is one of the pre-1900 astronomical observatories located in an urban area; at the time of its construction, it was far from the light pollution thrown off by the (then-smaller) city center. Former USNO director Gernot M. R. Winkler initiated the "Master Clock" service that the USNO still operates,[3] and which provides precise time to the GPS satellite constellation run by the United States Space Force. The USNO performs radio VLBI-based positions of quasars with numerous global collaborators, in order to produce Earth Orientation parameters.

The Seal of the USNO with a quote from the Astronomica by Marcus Manilius, Adde gubernandi studium: Pervenit in astra, et pontum caelo conjunxit, "Increase the study of navigation: it arrives in the stars, and marries the sea with heaven"

Aside from its scientific mission, a house located within the Naval Observatory complex serves as the official residence of the Vice President of the United States.


Aerial view of the U.S. Naval Observatory
The 26-inch (66 cm) aperture telescope, with which Asaph Hall discovered the Moons of Mars in 1877, shown here at its new location

President John Quincy Adams, who in 1825 signed the bill for the creation of a national observatory just before leaving presidential office, had intended for it to be called the National Observatory.[4] The names "National Observatory" and "Naval Observatory" were both used for 10 years, until a ruling was passed to officially use the latter.[5] Adams had made protracted efforts to bring astronomy to a national level at that time.[6][7] He spent many nights at the observatory, watching and charting the stars, which had always been one of Adams' interests.

Established by order of the United States Secretary of the Navy John Branch on 6 December 1830 as the Depot of Charts and Instruments,[8] the Observatory rose from humble beginnings. Placed under the command of Lieutenant Louis M. Goldsborough, with an annual budget of $330, its primary function was the restoration, repair, and rating of navigational instruments.

It was established as a national observatory in 1842 by federal law and a Congressional appropriation of $25,000. Lieutenant James Melville Gilliss was put in charge of "obtaining the instruments needed and books."[9] Lt. Gilliss visited the principal observatories of Europe with the mission to purchase telescopes and other scientific devices, and books.[10]

The observatory's primary mission was to care for the United States Navy's marine chronometers, charts, and other navigational equipment. It calibrated ships' chronometers by timing the transit of stars across the meridian. It opened in 1844 in Foggy Bottom north of the present site of the Lincoln Memorial and west of the White House (see: Old Naval Observatory), the observatory moved in 1893 to its present location[11] on a 2000-foot circle of land atop Observatory Hill overlooking Massachusetts Avenue. These facilities were listed on the National Register of Historic Places in 2017.[12]

The first superintendent was Navy Commander Matthew Fontaine Maury. Maury had the world's first vulcanized time ball, created to his specifications by Charles Goodyear for the U.S. Observatory. Placed into service in 1845, it was the first time ball in the United States and the 12th in the world. Maury kept accurate time by the stars and planets. The time ball was dropped every day except Sunday, precisely at the astronomically defined moment of Mean Solar Noon; this enabled all ships and civilians within sight to know the exact time. By the end of the American Civil War, the Observatory's clocks were linked via telegraph to ring the alarm bells in all of the Washington, D.C. firehouses three times a day. By the early 1870s the Observatory's daily noon-time signal was being distributed nationwide via the Western Union Telegraph Company. Time was also "sold" to the railroads and was used in conjunction with railroad chronometers to schedule American rail transport. Early in the 20th century, the Arlington Time Signal broadcast this service to wireless receivers.

In 1849 the Nautical Almanac Office (NAO) was established in Cambridge, Massachusetts as a separate organization. It was moved to Washington, D.C. in 1866, originally operating near Fort Myer. It colocated with the U. S. Naval Observatory in 1893. On September 20, 1894, the NAO became a "branch" of USNO; however, it remained autonomous for several years after this.[13]

An early scientific duty assigned to the Observatory was the U.S. contribution to the definition of the Astronomical Unit, or the AU, which defines a standard mean distance between the Sun and the Earth. This was conducted under the auspices of the Congressionally funded U.S. Transit of Venus Commission. The astronomical measurements taken of the transit of Venus by a number of countries since 1639 resulted in a progressively more accurate definition of the AU. Relying strongly on photographic methods, the naval observers returned 350 photographic plates in 1874, and 1,380 measurable plates in 1882. The results of the surveys conducted simultaneously from several locations around the world (for each of the two transits) produced a final value of the solar parallax, after adjustments, of 8.809", with a probable error of 0.0059", yielding a U.S. defined Earth-Sun distance of 92,797,000 miles (149,342,000 km), with a probable error of 59,700 miles (96,100 km). This calculated distance was a significant improvement over several previous estimates.[14]

The telescope used for the discovery of the Moons of Mars was the 26-inch (66 cm) refractor (a telescope with a lens), then located at Foggy Bottom.[15] In 1893 it was moved to the present location.[16]

In November 1913 the Paris Observatory, using the Eiffel Tower as an antenna, exchanged sustained wireless (radio) signals with the US Naval Observatory, using an antenna in Arlington, Virginia to determine the exact difference of longitude between the two institutions.[17]

Naval Observatory Flagstaff Station in operation

In 1934, the last (then) large telescope to be installed at USNO saw "first light". This 40-inch aperture instrument[18] was also the second (and final) telescope made by famed optician, George Willis Ritchey. The Ritchey–Chrétien telescope design has since become the de facto optical design for nearly all major telescopes, including the famed Keck telescopes and the spaceborne Hubble Space Telescope.

Because of light pollution in the Washington, DC metropolitan area, USNO relocated the 40-inch telescope to Flagstaff, Arizona. A new Navy command, now called the Naval Observatory Flagstaff Station (NOFS), was established there. Those operations began in 1955.[19] Within a decade, the Navy's largest telescope, the 61-inch "Kaj Strand Astrometric Reflector" was built; it saw light at NOFS in 1964.[20]

The US Naval Observatory no longer obtains significant astrometric observations, but it continues to be a major authority in the areas of Precise Time and Time Interval, Earth orientation, astrometry and celestial observation. In collaboration with many national and international scientific establishments, it determines the timing and astronomical data required for accurate navigation, astrometry, and fundamental astronomy and calculation methods — and distributes this information (such as star catalogs)[21] in the Astronomical Almanac, The Nautical Almanac, and on-line.[22]

The general public knows about its highly accurate ensemble of atomic clocks and its year 2000 time ball replacement.[23] The site houses the largest astronomy library in the United States (and the largest astrophysical periodicals collection in the world).[24] The library includes a large collection of rare, often famous, physics and astronomy books from the past millennium.

USNO continues to maintain its dark-sky observatory, NOFS, near Flagstaff, Arizona. This facility now oversees the Navy Precision Optical Interferometer.[25] The Alternate Master Clock, mentioned above, continues to operate at Schriever Air Force Base in Colorado.


In 1990, the Orbital Mechanics Department and Astronomical Applications Department were established, and Nautical Almanac Office became a division of the Astronomical Applications Department.[13][26] The Orbital Mechanics Department operated under P. K. Seidelmann until 1994 when the department was abolished, and its functions were moved to a group within the Astronomical Applications Department.[13] In 2010, USNO's astronomical 'department' known as the Naval Observatory Flagstaff Station (NOFS) was officially made autonomous as an Echelon Five command separate from USNO, but reporting to it. In the alpine woodlands above 7,000 feet altitude outside Flagstaff, Arizona, NOFS performs its national, Celestial Reference Frame (CRF) mission under dark skies in that region.

Official residence of the Vice President of the United States

Number One Observatory Circle, official home of the Vice President of the United States

Since 1974, a house situated on the grounds of the observatory, at Number One Observatory Circle, has been the official residence of the Vice President of the United States. It is protected by tight security control enforced by the Secret Service. The house is separated from the Naval Observatory. It formerly served as the residence of the observatory's superintendent, and later as that of the Chief of Naval Operations.[27]

According to a 15 May 2009 blog posting by Newsweek's Eleanor Clift,[28] Vice President Joe Biden revealed the existence of what Clift described as a bunker-like room in the residence. The bunker is the secure, undisclosed location where former Vice President Dick Cheney was secretly protected after the September 11 attacks.

According to Clift's report, titled "Shining Light on Cheney's Hideaway":

Biden said a young naval officer giving him a tour of the residence showed him the hideaway, which is behind a massive steel door secured by an elaborate lock with a narrow connecting hallway lined with shelves filled with communications equipment.

Biden's press office subsequently issued a statement denying the bunker report, suggesting that Biden had been describing "an upstairs workspace".[29]

Time service

Atomic clock ensemble at the U.S. Naval Observatory

The U.S. Naval Observatory operates two Master Clock facilities. The primary facility, in Washington, D.C. maintains 57 HP/Agilent/Symmetricom 5071A-001 high performance cesium atomic clocks and 24 hydrogen masers. The alternate master clock, at Schriever Air Force Base, maintains 12 cesium clocks and 3 masers.[30] The observatory also operates four[31] rubidium atomic fountain clocks, which have a stability reaching 7×1016.[32] The observatory intends to build several more of this type for use at its two facilities.[30] The clocks used for the USNO timescale are kept in 19 environmental chambers, whose temperatures are kept constant to within 0.1 degree C and whose relative humidities (for all masers and most cesiums) are kept constant to within 1%. The timescale is based only upon the Washington DC clocks. On June 7, 2007, 70 standards were weighted in the timescale computations.[30]

The U.S. Naval Observatory provides public time service via 26[30] NTP servers on the public Internet,[33] and via telephone voice announcements:[34]

  • +1 202 762-1401 (Washington, DC)
  • +1 202 762-1069 (Washington, DC)
  • +1 719 567-6742 (Colorado Springs, CO)

The voice of actor Fred Covington (1928–1993)[35] has been announcing the USNO time since 1978.[36]

The voice announcements follow the same pattern at both sites. They always begin with the local time (daylight or standard), and include a background of 1-second ticks. Local time announcements are made on the minute, and 15, 30, and 45 seconds after the minute. Coordinated Universal Time (UTC) is announced five seconds after the local time.[37] Upon connecting, only the second-marking ticks are heard for the few seconds before the next scheduled local time announcement

The USNO also operates a modem time service,[38] and provides time to the Global Positioning System.

Instrument shop

The United States Naval Observatory Instrument shop has been designing and manufacturing precise instrumentation since the early 1900s.[39]


  • Astronomical Observations made at the U.S. Naval Observatory (USNOA) (v. 1–6: 1846–1867)
  • Astronomical and Meteorological Observations made at the U.S. Naval Observatory (USNOM) (v. 1–22: 1862–1880)
  • Observations made at the U.S. Naval Observatory (USNOO) (v. 1–7: 1887–1893)
  • Publications of the U.S. Naval Observatory, Second Series (PUSNO) (v. 1–16: 1900–1949)
  • U.S. Naval Observatory Circulars[40]
  • The Astronomical Almanac
  • The Nautical Almanac
  • The Air Almanac
  • Astronomical Phenomena

See also


  1. Naval Meteorology and Oceanography Command. "The USNO's Mission — Naval Oceanography Portal". Usno.navy.mil. Retrieved 2011-07-27.
  2. "National Executive Committee for Space-Based Positioning, Navigation, and Timing". Pnt.gov. 2011-06-17. Retrieved 2011-07-27.
  3. "USNO Master Clock — Naval Oceanography Portal". Usno.navy.mil. Retrieved 2011-07-27.
  4. Dick, S. J.; Dick, Steven J. (2003). Sky and Ocean Joined: The U. S. Naval Observatory 1830-2000 – Steven J. Dick – Google Books. ISBN 9780521815994. Retrieved 2013-08-04.
  5. Frances Leigh Williams (1963). "VIII. Scientific Opportunity at Last". Matthew Fontaine Maury: Scientist of the Sea. Rutgers University Press, New Brunswick. p. 164. These different names for the Observatory and the term 'Hydrographic Office' were used interchangeably until December, 1854, when the Secretary of the Navy officially ruled that the proper designation was 'The United States Naval Observatory and Hydrographical office.'
  6. Dick, S. J. (1991). "The Origins of the Dominion Observatory, Ottawa". Journal for the History of Astronomy. 22: 45–53. Bibcode:1991JHA....22...31D. doi:10.1177/002182869102200106. S2CID 117369344.
  7. Portolano, M (2013-03-25). "John Quincy Adams's rhetorical crusade for astronomy". Isis. 91 (3): 480–503. doi:10.1086/384852. PMID 11143785. S2CID 25585014.
  8. Matchette, R. B.; et al. (1995). Guide to Federal Records in the National Archives of the United States. Washington, DC: National Archives and Records Administration.
  9. "The James Melville Gilliss Library — Naval Oceanography Portal". www.usno.navy.mil.
  10. "The Naval Observatory". The Baltimore Sun. December 14, 1842. p. 1. ProQuest 533000734.
  11. "The new U.S. Naval Observatory, Washington". Monthly Notices of the Royal Astronomical Society. 54 (4): 261. 1894. Bibcode:1894MNRAS..54..261.. doi:10.1093/mnras/54.4.240.
  12. "Weekly list of actions, 12/20/2016 through 1/13/2017". National Park Service. Retrieved 2017-01-26.
  13. Steven J. Dick (2003). Sky and ocean joined: the U.S. Naval Observatory, 1830–2000. Cambridge University Press. pp. 547–8, 574. ISBN 978-0-521-81599-4.
  14. Dick, Steven J. (2004) "The American Transit of Venus Expeditions of 1874 and 1882", Proceedings of the International Astronomical Union, International Astronomical Union, 2004, pp. 100–110, doi:10.1017/S1743921305001304. Published online May 23, 2005, retrieved February 2, 2012.
  15. "Telescope: Naval Observatory 26-inch Refractor".
  16. "The 26-inch "Great Equatorial" Refractor".
  17. "Paris Time By Wireless," The New York Times, November 22, 1913, pg 1.
  18. "U.S. Naval Observatory Flagstaff – 1.0-m Ritchey-Chretien Reflector". Nofs.navy.mil. 1998-01-25. Retrieved 2011-07-27.
  19. "USNO Flagstaff Station – History". Nofs.navy.mil. Retrieved 2011-07-27.
  20. "U.S. Naval Observatory Flagstaff – 1.55-m Astrometric Reflector". Nofs.navy.mil. 2001-05-24. Retrieved 2011-07-27.
  21. Naval Meteorology and Oceanography Command. "Catalog Information — Naval Oceanography Portal". Usno.navy.mil. Retrieved 2011-07-27.
  22. Naval Meteorology and Oceanography Command. "Interactive Catalog and Image Search — Naval Oceanography Portal". Usno.navy.mil. Retrieved 2011-07-27.
  23. Nemiroff, R.; Bonnell, J., eds. (1999-10-29). "The USNO Millennium Time Ball". Astronomy Picture of the Day. NASA. Retrieved 2015-12-27.
  24. Naval Meteorology and Oceanography Command. "The James Melville Gilliss Library — Naval Oceanography Portal". Usno.navy.mil. Retrieved 2011-07-27.
  25. "NPOI". Lowell Observatory.
  26. Seidelmann, P. K. (1997). "Nautical Almanac Office 1975–1996". American Astronomical Society Meeting Abstracts. 191: 01.05. Bibcode:1997AAS...191.0105S. Retrieved 2011-07-27.
  27. The Vice-President's Residence and Office access-date=2013-02-27
  28. Daniel Stone (2009-05-16). "Shining Light On Cheney's Hideaway". Blog.newsweek.com. Archived from the original on 2010-01-06. Retrieved 2011-07-27.
  29. "Biden Reveals Location of Secret VP Bunker". FOX News. 2009-05-17. Archived from the original on 2009-05-19. Retrieved 2009-05-17.
  30. Matsakis, Demetrios (2010-09-20), "Report from the U.S. Naval Observatory" (PDF), Civil GPS Service Interface Committee, retrieved 2010-10-31
  31. U.S. Naval Observatory Declares Full Operational Capability for Rubidium Fountain Clocks
  32. "Initial Evaluation of the USNO Rubidium Fountain (PDF)" (PDF). Archived from the original (PDF) on 2011-06-15. Retrieved 2010-11-17.
  33. "Usno Network Time Servers". Tycho.usno.navy.mil. Retrieved 2011-07-27.
  34. "Telephone Time — Naval Oceanography Portal". Usno.navy.mil. Retrieved 2011-07-27.
  35. "Fred Covington". IMDb.
  36. "Keeping Time By Rubidium At The Naval Observatory". NPR. Retrieved 2015-03-11.
  37. "Telephone Time — Naval Oceanography Portal". www.usno.navy.mil.
  38. "USNO Master Clock via Modem". Tycho.usno.navy.mil. Retrieved 2011-07-27.
  39. Fey, Alan L. "The USNO Instrument Shop". ad.usno.navy.mil. Retrieved 2018-11-08.
  40. Naval Meteorology and Oceanography Command. "U.S. Naval Observatory Special Publications — Naval Oceanography Portal". Usno.navy.mil. Retrieved 2011-07-27.

Further reading

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