The only rock of non-volcanic origin in these islands consists of
granular limestone and clay slate forming the ridge of Mount St. Elias,
which rises to a height of 1887 feet at the south-eastern side of the
island of Thera, crossing the island from its outer margin nearly to the
interior cliff, so that the volcanic materials have been piled up along
its sides. The rocks of St. Elias are much more ancient than any of the
volcanic materials around; and, as Bory St. Vincent has shown, have been
subjected to the same flexures, dip and strike, as those sedimentary
rocks which go to form the non-volcanic islands of the Grecian
archipelago.
[Illustration: Fig. 14.--Bird's-eye View of the Gulf of Santorin during
the volcanic eruption of February 1866.--(After Lyell.)]
[Illustration: _Ground Plan of Rocca Monfina_
Fig. 15.--Rocca Monfina, in Southern Italy, showing a crater-ring of
trachytic tuffs, from the midst of which, according to Judd, an andesite
lava-cone has been built up. Compare with the Santorin Group.]
(_b._) _Origin of the Santorin Group._--In reference to the origin of
the Santorin group, Lyell regards it as a remnant of a great volcanic
mountain which possessed a focus of eruption rising in the position of
the present foci, but afterwards partially destroyed and the whole
submerged to a depth of over 1000 feet. But another explanation is open
to us, and one not inconsistent with what we now know of the physical
changes to which the Mediterranean has been subjected since early
Tertiary times. To my mind it is difficult to conceive how such a
volcanic mountain as that of Santorin could have been formed under
water; while, on the other hand, its physical structure and contour bear
so striking a resemblance (as already observed) to those of Vesuvius and
Rocca Monfina that we are much tempted to infer that it had a somewhat
similar origin. Now we know that Vesuvius was built up by means of
successive eruptions taking place under the air; and the question arises
whether it could be possible that Santorin had a similar origin owing to
the waters of the Mediterranean having been temporally lowered at a
later Tertiary epoch. It has been stated by M. Fouqué that the age of
the more ancient volcanic beds of Santorin belong, as shown by the
included fossils, to the newer Pliocene epoch. These are of course the
unsubmerged, and therefore more recent strata, and may have been
recently upheaved during one or more of the outbursts of volcanic
energy. But it seems an impossibility that the Gulf of Santorin, with
its precipitous walls and deep circular interior channel, as shown by
the Ideal Section (Fig. 13), could have been formed otherwise than under
the air. We are led, therefore, to inquire whether there was a time in
the history of the Mediterranean, since the Eocene period, when the
waters were lower than at present. That this was the case we have clear
evidence. The remains of elephants, hippopotami, and other animals,
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