We are 66 Km North of the Tropic of Cancer…

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We are 66 Km North of the Tropic of Cancer…

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We are 66 Km North of the Tropic of Cancer…. Eratostenes’ method for measuring Solar Diameter. ~ 272-192 b.C. Method quoted by Posidonius (135 - 51 b. C.), master of Cicero. Measures of Solar Diameter with Eclipses. Costantino Sigismondi [email protected] Lights of the Dark Universe - PowerPoint PPT Presentation

Transcript of We are 66 Km North of the Tropic of Cancer…

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We are 66 Km North ofthe Tropic of Cancer…

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Eratostenes’ method for measuring Solar Diameter

~272-192 b.C.

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Method quoted by Posidonius (135 - 51 b. C.), master of Cicero

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Measures of Solar Diameter with Eclipses

Costantino [email protected]

Lights of the Dark UniverseHuaLien, May 31, 2008

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A project in collaboration with

• PICARD team (France)

• SDS team (Yale - NASA)

• IOTA (D. W. Dunham, W. H. Warren)

Started at Rome Astronomical Observatory

Goals:Sampling 500 years of solar diameter historyCalibration for ground based measurements

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60 years series of solar diameters by transits at

Campidoglio since 1877

e.g. T. Fortini, MemSAIt 20 327 (1949)

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On the medieval tower of Pope Boniface IX (1389)

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This observatory no more exists

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Solar Tradition in Rome: from Father Angelo Secchi (1818-78)

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Eclissi e Diametro

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Duration vs distance from centerline: maximum variation

near shadow’s limits

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Orbital motions are precisely known

• JPL ephemerides • IMCCE french ephem.

(Planets, Sun and Moon)

e.g. Mercury’orbit analytical model < 4 mas +

• Lunar Laser Ranging

2 cm accuracy

(Fienga et al 2003) http://www.iers.org/documents/publications/tn/tn29/tn29_093.pdf

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Lunar Limb: profiles accuracy

• Chester Watts (1962) published the atlas of lunar limbs at all libration phases

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Digitized Watts Atlas

Available in Winoccult freeware program, by D. Herald

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Updated with stellar occultations

Maximum uncertainty on a single feature: ±200 mas

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Chang’e-1: Lunar mission in progress

Launched on October 24, 2007: Lunar Mapping will finally update limb’s profiles up to 0.001” accuracy?

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Baily’s Beads (discovery 1842)

• Lunar limb cuts portions of solar photosphere• Timing and locating their dis/appearances yields N points

of solar disk with ± 200 mas each (systematic, reduced with polar beads observations)

• Final Statistical Uncertainty on Solar Diameter ~1/√N ranging from 50 mas (N=16), to 30 mas (N=50)

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Observational strategy

• Getting the maximum number/duration of Baily Beads with

• Geographical location

• UTC timing

• Going to grazing eclipses(polar beads)

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Caribbean Eclipse 1998•Bead’s Identification (PA+time)

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Geographical location• Referred to permanent landscape

features• GPS /

Satellite image

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UTC timing

• Has to be precise (0.01 s)

• Has to portable • Has to be

temperature calibrated

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Typical Time errors for Quartz watches

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Calibration with video recording Radio Signals

• Of internal quartz watch of CamCorder• Of auxiliary quartz watch

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Imaging the eclipse

• Naked eye (1567-1715-1925)

• Video + high density filters

• Video + projection

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Signal to Noise ratio

To determine the faintest beador its limiting magnitude

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Sky background• If the projection is not made in a camera

obscura there are different background levels, ranging over more than 1000 in intensity

Total eclipse, Egypt Zawyet al Mahtallah march 29, 2006 Southern Limit

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Annular eclipse 92.5%

• Kourou, French Guyana Sept. 22, 2006, Sun at 8° above horizon

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Sunset /Sunrise

• Ostia (Rome, Italy) Sept. 5, 2006

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High Clouds

• Roma, Oct. 18, 2006

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Atmospheric extinction

Deviation starts at ~4° above horizon

Explained by a thin plane parallel layer of humidity

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Solar Limb Darkening Function

From Rogerson, 1959

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Intensity rises from 16% to 33% within 2.5 arcsec from limb

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Our equipment

+

+White Projection Screen

+ Camcorder and 2 quartz calibrated watches

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Our Measurements

• Spain, 2005 (clouded; data from other observers; our idea was to measure the same eclipse with different devices)

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Egypt, 2006: more than 50 beads identified; ∆R= -0.17”±0.24”

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Corona at the shadow limit

Before totality (± 4 minutes of visibility at naked eye)

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At maximum eclipse

At naked eye the irregular structure of the corona was well visible.

Does exists a Circular Inner Corona?

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Stephenson et al, 1997 say “YES”and consider total the eclipse of Rome,1567 observed by Clavius

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Clavius wrote a Commentarius to the Sphaera of Sacrobosco

(John Holywood, Sphaera -1256)

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In 1581 edition Clavius wrote:

relinquebatur in Sole circulus quidam exilis undique totam lunam ambiens. He actually saw an annular eclipse. The Sun in 1567 was >2.5 arcsec larger than now ? Not possible for physical reasons…

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Clavius was Clavius was the teacher the teacher of Father of Father

Matteo Ricci Matteo Ricci from 1572 to from 1572 to

15781578

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Astron. Astrophys 1997, the debate continues

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Halley and Royal Society: Eclipse of May 3, 1715

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Philosophical Transactions 1717

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Prof. Brown (Yale) for NYC eclipse1925

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Exeligmos: 54 years 33 days

• 1979 another total eclipse in USA with same libration phase

• ΔR= -0.6” from 1715 to 1979 with all variation in 1925-1979…

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from Fiala, Dunham & Sofia, So. Phys. 152, 92 (1994)

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Climate ChangesFrom John L. Daly www; K. Schatten www

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Solar Activity

• From Usokin and KavaltsovSo. Phys. 224, 37 (2004)

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Anticorrelation radius-sunspots?from Sofia et al. 2006, not based on eclipses

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French Guyana, Sept. 2006

• Eclipse at sunrise, high extinction and bad seeing

• 16 beads identified• ΔR= -0.01±0.17 arcsec: average value at solar

minimum...

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And Transits?• Venus 1769: Discovery of Black Drop effect

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1882 Transit: with photographs

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Explanation of Black dropG. Horn d’Arturo – J. Pasachoff (TRACE)

due to instrumental optical distortions

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Black drop affects the methods of measuring solar diameter

• Uncertainty of the contact timings up to several minutes…

• We avoid it in eclipses choising only dis/appearance of beads (light OFF/ON) which are optically independent

• For transits the ultimate obstacle is now atmospheric seeing

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Transit of Venus 2004

• Chord method

Intersection between two chords: analytical

Fit with 3 free parameters:

•in/egress constant velocity

•Venus diameter (maximum of red chord)

•In/egress time (output)

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Solar Diameter measurement

• With only 50 images• Internal contacts:• 2nd @ 7 am ± 8 s (low Sun, high

atmospheric turbulence)• 3rd @ 1 pm ± 1 s• Application to solar diameter with D.

Herald’s Winoccult software (Sigismondi, 2006):

• ΔR=0.69±0.38 arcseconds

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November 8, 2006Mercury transit

At the R. B. Dunn Telescope at Sacramento Peak sunset occurred before 3 contact;

Mauna Kea too windy for 1st contact

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2008, august 1 ?

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Help is welcome!