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<BODY><B>Matti Pitk=E4nen</B>=20
<P><B>Postal address:</B> <BR>
<DD><I>Department of Physics, Theoretical Physics Division,
<DD>P.O. Box 9 Fin-00014, University of Helsinki, =
Finland</I><BR><B>E-mail</B>:=20
<BR>
<DD><I>matpitka@rock.helsinki.fi</I><BR><B>URL-address</B>: <BR>
<DD><I>http://blues.helsinki.fi/~matpitka</I>=20
<P>
<HR>

<P>
<CENTER><FONT size=3D+1><A=20
href=3D"http://www.physics.helsinki.fi/~matpitka/figu.html">Illustrations=
 about=20
TGD and TGD inspired theory of consciousness </A></FONT></CENTER>
<P>
<HR>

<P>
<P><FONT size=3D+2>
<CENTER>Wormholes and possible new physics in biological length scales=20
</CENTER></FONT>
<P><FONT size=3D+1>
<CENTER>1. Wormhole magnetic fields</CENTER></FONT>
<P>Topological field quantization is one of the basic differences =
between TGD=20
and ordinary quantum field theories. In TGD spacetime is regarded as a =
surface=20
of the 8-dimensional space H=3DM^4_+xCP_2 and classical gauge fields are =
induced=20
from the curvature of the CP_2 spinor connection. The compactness of =
CP_2, as=20
opposed to noncompactness of the space of the ordinary spinor =
connections,=20
implies that the imbedding of a given gauge field typically fails on=20
3-dimensional surfaces and this implies many-sheeted spacetime structure =
with=20
different sheets having finite M^4_+ projection and outer boundary. At =
the=20
boundaries the gauge fluxes flow from the smaller sheet to a larger one =
via tiny=20
wormholes with a size determined by CP_2 size.=20
<P>The simplest instance of the topological field quantization is the=20
replacement of the classical magnetic fields with bundles of flux tubes =
parallel=20
to the field lines: the flux tubes are cylindrical 3-surfaces with an =
outer=20
boundary. A more exotic instance are ``wormhole magnetic fields'' =
consisting of=20
two identical tubular spacetime sheets and with charged wormholes =
situated at=20
the boundaries of the flux tubes acting as the sources of the magetic =
fields.=20
These configurations are vacuum configurations in the sense that they do =
not=20
contain ordinary matter at all. They can have also finite size both =
spatially=20
and also in time direction (!) in case that they are topologically =
condensed on=20
a larger spacetime sheet and there is a small energy flow from the =
larger=20
spacetime sheet at time T_1 and back at time T_2&gt; T_1. Worhole =
magnetic=20
fields glued to the spacetime sheets containing ordinary biomatter, are =
good=20
candidates for the physical realization of cognitive representations. =
These=20
almost vacuum spacetime sheets glued to the material world giving rise =
to a=20
cognitive representation would be very much like physical measurement =
apparata=20
introducing a very slight perturbation of the system to be measured. =
Wormhole=20
magnetic could be even regarded as the quintessence of the living =
systems.=20
<P>
<P><A name=3Dwormagn></A>
<CENTER><IMG alt=3D"" =
src=3D"http://www.physics.helsinki.fi/~matpitka/wormagn.gif"=20
align=3Dbottom border=3D3 NATURALSIZEFLAG=3D"3"></TD> </CENTER>
<P>Fig. 1. Wormhole magnetic fields: a schematic representation. The two =
flux=20
tubes, connected by rotating wormholes, are hollow sylinders with some=20
thickness. + symbolizes topological sum (formation of wormhole =
contacts).=20
<P>The two spacetime sheets involved with the wormhole magnetic fields =
can have=20
same value of the p-adic prime characterizing the effective p-adic =
topology. The=20
special feature of the p-adic entanglement is that the entanglement =
entropy can=20
vanish for it and the p-adic version of the Negentropy Maximization =
Principle=20
allows extended free will in case of S=3D0 entanglement: any S=3D0 final =
state is=20
allowed as a final state of quantum jump whereas for ordinary S=3D0 =
entanglement=20
only eigenstates of the density matrix are possible as the final states. =
S=3D0=20
subsystems can participate in all quantum jumps whereas S&gt;0 =
subsystems can=20
participate quantum jump only provided they give rise to maximum =
negentropy=20
gain. This suggests that the possibility of 'self' (or even 'soul') =
could be=20
basically due to these S=3D0 subsystems making possible effectively =
continuous=20
stream of consciousness instead of quantum jumps allowed to occur only =
now and=20
then by the strong form of NMP. The identification of the conscious =
experiences=20
associated with S=3D0 quantum jumps as counterparts of free imagination =
suggests=20
itself whereas the quantum jumps associated with the entangled systems=20
possessing different p-adic primes would correspond naturally to sensory =

experience without no conscious selection since entanglement =
coefficients are=20
either 1 or 0 and there is a complete permutation symmetry between =
various=20
choices. The experiences involving conscious choice would in turn =
correspond to=20
S&gt;0 p-adic entanglement.=20
<P>Wormhole magnetic fields provide a quantum mechanism for a control at =

distance, say of the control of the behaviour of cell organelles by cell =
nucleus=20
as well as a model for the memory of biosystem in terms of integer =
valued=20
winding numbers identifiable as quantized momenta of the wormhole supra=20
currents. One of the basic problems of biology is how the genetic code =
is=20
transformed into spatial structures during ontogeny, and an attractive =
idea is=20
that each DNA sequence corresponds to a characteristic wormhole magnetic =
field=20
configuration serving as a template for the topological condensation of =
the=20
ordinary matter. The fact that wormhole flux tubes are <I>hollow</I> =
cylinders,=20
is in nice accordance with this idea (microtubules, axonal membranes, =
etc. are=20
hollow cylinders).=20
<P>
<HR>

<P><FONT size=3D+1>
<CENTER>Possible effects related to the wormholes </CENTER></FONT>
<P>
<P><FONT size=3D+1>2.1. Phantom DNA </FONT>
<P>Phantom DNA effect [worm], if it turns out to be real, provides =
evidence for=20
the concept of wormhole magnetic field. What happens is that biomatter =
is=20
irradiated with a visible laser light. One removes the biomatter from =
the=20
chamber and what is observed is that the irradiation with laser light =
still=20
leads to nontrivial correlation functions: as if the chamber still would =
contain=20
something, the phantom DNA, scattering the laser light. The proposed=20
identification of the phantom DNA effect is in terms of the wormhole =
magnetic=20
fields left in the chamber, when DNA is removed. The explanation of both =
effects=20
involves a detailed mechanism for the interaction of the coherent light =
with the=20
wormhole BE condensate leading to a generation of wormhole supra =
currents. This=20
interaction could be fundamental in the biological information =
processing.=20
<P>
<HR>

<P><FONT size=3D+1>2.2. Exotic atoms </FONT>
<P>One of the basic consequences of the many-sheeted spacetime concept =
is the=20
concept of exotic atom. When a valence electron drops from the atomic =
spacetime=20
sheet to a larger, say 'molecular' spacetime sheet, a wormhole is =
formed. The=20
process also leads to a lowering of the valence of the atom and to the =
change of=20
the chemical properties of the atom: electronic alchemy becomes =
possible.=20
<P>The claimed peculiar properties, in particular an effective change of =
the=20
number of valence electrons and possible super conductivity, of the =
materials=20
called ORMEs (Orbitally Rearranged Monatomic Elements) [Hudson], <I>if=20
</I>really real, could perhaps be understood using the concept of exotic =
atom.=20
The Ca, K and Na ions crucial for the functioning of the cell could be =
perhaps=20
regarded ionized states of the exotic atoms.=20
<P>
<HR>

<P>
<P><A name=3Dexoatom></A>
<CENTER><IMG alt=3D"" =
src=3D"http://www.physics.helsinki.fi/~matpitka/exoatom.gif"=20
align=3Dbottom border=3D3 NATURALSIZEFLAG=3D"3"></TD> </CENTER>
<P>Fig. 2. Formation of exotic atom: two-dimensional visualization. The =
electron=20
on atomic spacetime sheet drops to a larger 'molecular' spacetime sheet. =

<P>
<HR>

<P><FONT size=3D+1>2.3 DNA as a conductor </FONT>
<P>The concept of the exotic atom might make it possible to understand =
the=20
recently established ability of DNA to act as a conductor [Barton]: =
electronic=20
charge carriers could propagate in the non-atomic spacetime sheet =
without an=20
appreciable resistance. Actually, propagation at nonatomic, almost =
empty,=20
spacetime sheet might provide a general mechanism of charge transfer in =
living=20
matter. The first mechanism to come in mind is the trapping of the =
electron=20
around an enhancement of positive wormhole charge density associated =
with a=20
propagating soliton like deformation of the boundary of the lower DNA =
spacetime=20
sheet. A quantitative model is possible since the coupling of the =
electron to=20
wormholes is the ordinary em coupling and the coupling of the wormholes =
to the=20
boundary geometry is mediated by the induced metric appearing in the =
kinetic=20
part of the action.=20
<P>
<HR>

<P><FONT size=3D+1>2.4 A new mechanism of electronic super conductivity? =
</FONT>
<P>
<P>The electrons on the nonatomic spacetime sheet could form Cooper =
pairs. They=20
see only the classical electromagnetic fields of the wormholes feeding =
the gauge=20
fluxes from the atomic spacetime sheet. The excitations of the wormhole =
BE=20
condensate generated by the classical electromagnetic interaction of the =

electron with the the wormhole BE condensate could replace phonons in =
the usual=20
mechanism of super conductivity by generating a small attractive =
interaction=20
between the members of the Cooper pair. This mechanism, it it really =
works at=20
the quantitative level, might be possible only at rather long p-adic =
length=20
scales since the excitation energy of the wormhole BE condensate is =
proportional=20
to 1/L(p) and rather large in nano length scales. It is too early to say =

anything about whether the different spacetime sheets are in thermal =
equilibrium=20
or not. If not, then a new mechanism of high temperature super =
conductivity=20
would become possible. The super conductivity in question is of type II =
and=20
defect regions are thus cylinderlike regions: various linear structures =
such as=20
DNA, proteins, microtubules,... could correspond to these defects. =
Wormhole=20
magnetic fields provide a possible representation for the defect =
regions. Rather=20
remarkably, the critical magnetic fields of exotic super conductors are =
very low=20
and thus magnetic fields could play key role in the biological =
information=20
processing if the quantum numbers of magnetic fields serve as carriers =
of=20
bio-information.=20
<P><FONT size=3D+1>2.5 Neutrino super conductivity? </FONT>
<P>
<P>Both classical Z^0 force and neutrinos should play key role in =
condensed=20
matter length scales and be especially relevant for biosystems. The =
mechanism of=20
neutrino super conductivity is same as that for exotic electronic super=20
conductivity: now only electromagnetic wormholes are replaced with Z^0 =
charged=20
wormholes. Type I super conductivity is in question in the relevant =
length scale=20
range and defects are stripe like regions. Cell membranes, epithelial =
cell=20
sheets and various bilayered structures in cortex are good candidates =
for the=20
defects of neutrino super conductivity. TGD based explanation of the =
tritium=20
beta decay anomaly relies heavily on the presence of classical Z0 fields =

screened by neutrinos in condensed matter length scales. Also neutrino =
super=20
conductivity is crucial aspect of the model. Also the acceleration =
anomaly of=20
spacecrafts has explanation in terms of neutrinos and long ranged =
classical Z^0=20
force.=20
<P>
<HR>

<P><FONT size=3D+1>
<CENTER>Bibliography </CENTER></FONT>
<P>[worm] M.P. (1997) <I>Phantom DNA effect, Comorosan effect, DNA as a=20
conductor, ORMEs: four peculiar phenomena with a common explanation. =
</I><A=20
href=3D"ftp://rock.helsinki.fi/pub/misc/matpitka/worm.ps.Z">ftp://rock.he=
lsinki.fi/pub/misc/matpitka/worm.ps.Z</A>
<P>[Barton] Science, vol. 275, 7, March 1997. Article about the work of =
Barton=20
<I>et al&lt; </I>giving evidence for the ability of DNA to act as =
conductor.=20
[Comorosan1] S. Comorosan(1975), <I>On a possible biological =
spectroscopy</I>,=20
Bull. of Math. Biol., Vol 37, p. 419.
<P>[Comorosan2] S. Comorosan, M. Hristea, P. Murogoki (1980), <I>On a =
new=20
symmetry in biological systems</I>, Bull. of Math. Biol., Vol 42, p. =
107.
<P>[Hudson]<BR>'Monatomic' homepage. <A=20
href=3D"http://monatomic.earth.com/">http://monatomic.earth.com/</A>. =
The patent=20
of Hudson for Gold ORME (White Gold) can be found from this homepage. =
There is=20
also a link to Joe Champion's homepage.=20
<P>[Poponin] V. Poponin (1996), <I>DNA PHANTOM EFFECT: Direct =
Measurement of a=20
New Field in the Vacuum Substructure</I>, <A=20
href=3D"http://www.webcom/~hrtmath/IHM/ResearchPapers/DNAPhantom/DNAPhant=
om.html">http://www.webcom/~hrtmath/IHM/ResearchPapers/DNAPhantom/DNAPhan=
tom.html</A>=20

<P>
<HR>

<P><FONT size=3D+1>
<CENTER><A =
href=3D"http://www.physics.helsinki.fi/~matpitka/material.html">Links=20
to material about TGD </A></CENTER></FONT>
<P>
<HR>

<P>
<CENTER><A =
href=3D"http://www.physics.helsinki.fi/~matpitka/mainpage.html">Back to=20
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