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Landau-Zener interferometry for qubits
One may probe intrinsic coherence of a qubit by periodically sweeping its
control parameter. The qubit is then excited by Landau-Zener (LZ) mechanism.
The interference between multiple LZ transition leads to the unusual
oscillatory dependence of the energy absorption rate on sweeping amplitude and
period. This interference pattern allows to determine the decoherence time of
the qubit. We introduce a simple phenomenological model describing this
"interferometer", and find the form of the interference pattern.Comment: 7 pages, 2 figures; added: microscopic derivation of the master
equation, finite temperature of the reservoi
Extended F_4-buildings and the Baby Monster
The Baby Monster group B acts naturally on a geometry E(B) with diagram
c.F_4(t) for t=4 and the action of B on E(B) is flag-transitive. It possesses
the following properties:
(a) any two elements of type 1 are incident to at most one common element of
type 2, and
(b) three elements of type 1 are pairwise incident to common elements of type
2 iff they are incident to a common element of type 5.
It is shown that E(B) is the only (non-necessary flag-transitive)
c.F_4(t)-geometry, satisfying t=4, (a) and (b), thus obtaining the first
characterization of B in terms of an incidence geometry, similar in vein to one
known for classical groups acting on buildings. Further, it is shown that E(B)
contains subgeometries E(^2E_6(2)) and E(Fi22) with diagrams c.F_4(2) and
c.F_4(1). The stabilizers of these subgeometries induce on them flag-transitive
actions of ^2E_6(2):2 and Fi22:2, respectively. Three further examples for t=2
with flag-transitive automorphism groups are constructed. A complete list of
possibilities for the isomorphism type of the subgraph induced by the common
neighbours of a pair of vertices at distance 2 in an arbitrary c.F_4(t)
satisfying (a) and (b) is obtained.Comment: to appear in Inventiones Mathematica
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