On 2/4/2014 1:11 PM, Jesse Mazer wrote:


On Tue, Feb 4, 2014 at 3:59 PM, LizR <[email protected] 
<mailto:[email protected]>> wrote:

    There is nothing exotic about the state of a photon being determined by 
future
    boundary conditions.


You *could* determine the state of any system in quantum theory by future boundary conditions, but what would be exotic is the assumption that neither past nor future boundary conditions are sufficient on their own, that you need a combination of both. That just isn't how it works in quantum theory,

Some people think it is. When the past boundary condition doesn't predict a definite future condition, then adding a future boundary condition can resolve it. That's how Stenger effectively gets a non-local effect in an EPR experiment.

Brent

so you'd need some fundamentally different theory, unlike the ones physicists know, for that to be true. Such a thing is certainly logically possible, but you can't really point to the time symmetry of existing theories as evidence that it's the "easiest" of ways to explain away Bell's results.


    A photon has a very limited memory and doesn't partake in thermodynamics on 
its own.


I don't know what you mean by "memory", or how thermodynamics is relevant. Technically you should be able to apply thermodynamics to any system which can have multiple states, including a single particle in a box, just by making some choice about how to coarse-grain all the "microstates" into a set of "macrostates".


    The onus is to show why it wouldn't be influenced equally by past and future
    boundary conditions if time is fundamentally symmetric


You can say it's influenced equally, in the sense that complete knowledge of either one can be used to determine the quantum state of a system. But again, that's fundamentally different from saying neither set of boundary conditions alone is sufficient, that you need to take into account both at once.

Jesse





    On 5 February 2014 09:54, Jesse Mazer <[email protected]
    <mailto:[email protected]>> wrote:



        On Tue, Feb 4, 2014 at 3:35 PM, LizR <[email protected]
        <mailto:[email protected]>> wrote:

            On 4 February 2014 23:25, Bruno Marchal <[email protected]
            <mailto:[email protected]>> wrote:


                On 04 Feb 2014, at 00:29, LizR wrote:

                On 4 February 2014 12:23, Jesse Mazer <[email protected]
                <mailto:[email protected]>> wrote:

                    On Mon, Feb 3, 2014 at 5:48 PM, <[email protected]
                    <mailto:[email protected]>> wrote:

                        But more generically speaking, would this inference for
                        blocktime sit at the edge of relativity or at its core. 
What I
                        mean is, beyond that it is an implication of 
relativity, have
                        there been or are there any prospects for developing 
blocktime
                        as it arises from relativity to such point, predictions 
get
                        made? Or any other kind of reinforcement? Or does 
blocktime go
                        on to imply something beyond blocktime?


                    If "block time" is taken as a definite ontological 
statement about
                    all times "existing" in exactly the same sense, rather than 
just
                    referring to the idea of treating time as a dimension 
conceptually
                    or in our mathematical models, then I think it's a 
metaphysical
                    postulate that goes beyond anything directly implied by 
relativity.
                    Relativity says that all frames, with their different 
definitions
                    of simultaneity, are on equal footing as far as the laws of 
physics
                    are concerned, but it doesn't deal with ontology. If someone
                    proposes that one frame's definition of simultaneity is
                    "metaphysically preferred" in the sense it defines the "true
                    present", but adds the caveat that this frame is not in any 
way
                    physically preferred so that no conceivable experiment could
                    determine which frame it is, this wouldn't contradict the 
physics.
                    It would be an "interpretation" of SR, similar to the 
different
                    "interpretations" of QM which postulate different things 
about
                    ontology (the real existence of other worlds in the MWI, or 
a
                    single world with hidden variables in Bohmian mechanics, for
                    example) but are indistinguishable experimentally.


                SR directly demonstrates block time via the relativity of 
simultaneity.
                This can be tested experimentally.


                    That said, if you subscribe to any form of Occam's razor or 
even a
                    criteria of "elegance" when it comes to choosing between 
different
                    metaphysical hypotheses, it seems a lot simpler to assume 
that
                    there is no metaphysically preferred definition of 
simultaneity,
                    just as I think many would agree the MWI is the simplest 
way of
                    interpreting the physical theory of QM. Adding extra "purely
                    metaphysical" entities to a theory, which don't correspond 
to
                    anything that appears in the mathematical formalism of the 
theory
                    itself (which would apply to things like a "true present" 
or to
                    hidden variables in QM), seems a bit like postulating that 
there
                    are invisible intangible elves sitting on each person's 
head which
                    have no causal effects on anything we can measure; sure it's
                    logically possible, but it seems like a very inelegant and
                    arbitrary way for reality to work.

                The MWI is deterministic, however, and hence has hidden 
variables.
                But not "hidden variable" in the EPR sense. In the MWI, there 
are hidden
                universes, they are not variable, but terms in the universal 
wave, and
                we just don't know which terms apply to us. If it was hidden 
variable in
                the EPR sense, then by Bell, they would be non-local, and you 
would
                conclude falsely (like Clark) that the MWI has to be non local 
(which I
                doubt very much).

            No, as I explained elsewhere, Bell's inequality rests on 4 
assumptions, and
            the easiest assumption to remove is that time is asmmetric at the
            fundamental level (which /in any case/ physics indicates it isn't, 
except
            for neutral kaon decay - which I dount has ever been used in an EPR 
experiment).


        As I've said to you in the post at
        
http://www.mail-archive.com/[email protected]/msg46130.html , the
        type of time-symmetry seen in modern physics--which just says that the 
same laws
        can be used to retrodict past states as are used to predict future 
states, but
        doesn't say you *need* information about the future as well as the past 
to
        predict the state in a given region of spacetime--is not enough to 
evade the
        conclusions of Bell's theorem. In order to do that you'd need either a 
theory
        where determining the state of a region does require knowing both its 
past and
        its future, or you'd need some strong restrictions on the possible 
boundary
        conditions, both of which would be pretty exotic assumptions, not ones 
I'd
        consider to be the "easiest" modification of Bell's assumptions. In the 
case of
        the type of dynamical time-symmetric (or CPT-symmetric) theories that 
physicists
        have found useful in describing nature, where you can use a set of 
initial
        conditions to predict a later state, the argument about conditioning on 
a slice
        of the past light cone I mentioned at
        
http://www.mail-archive.com/[email protected]/msg45832.html (and
        which matches Bell's discussion of conditioning on slices of past light 
cones in
        his "La nouvelle cuisine" paper) still works fine to show that if the 
theory is
        local realistic (and doesn't include parallel universes), Bell 
inequalities
        should not be possible to violate.

        Jesse
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