Sambuco said:
Personally, I consider it very similar to Rovelli's relational interpretation,
I agree that Barandes view has similarities with RQM, but many interpretations are similar.
My own critique of Barandes is that he does not give a first-principles construction of Gamma. In that sense the stochastic-quantum correspondence is still a correspondence, not yet a deeper explanation.
But I would make a similar criticism of RQM. Rovelli correctly emphasizes that there is no absolute view and that different views can only be compared through physical interaction. But that comparison process is still just a quantum-mechanical interaction he says. So RQM uses QM to glue together the relational perspectives; it does not explain the origin of the quantum structure itself.
Where I see novelty in Barandes is that he gives a different handle on the nature of physical law. The primitive is not a global wavefunction evolving on an objective state space, but a stochastic transition structure between configurations. Rovelli does not, in my view, offer a similarly useful handle on the nature of law itself.
Fra said:
An agent for example can not revise his state due to information not at hand. This is why its the subsystems expectation/knowledge that determinea a stochastic better. Paradoxally the process does not care about the "true state". Only information about it matters.
Sambuco said:
I completely agree! My position is somewhat more radical: a "true state" (the "value state" of modal interpretations) only exists when there is information about it.
When I used the word paradoxically I was trying to express the following point of your reasoning.
If one thinks of laws of nature as acting on an objective state space of facts or truth-values, then it gets paradoxal to say that the process cares about information rather than the “true state.” But in a picture of interacting evolving subsystems, the current information state is precisely what determines how a subsystem can react. No subsystem can update its behaviour on information it does not have.
So the “real truth values” of other systems are always shielded behind layers of interaction(or inference which makes it more clear what i mean). This also should also shields the stochastic constraints. What a subsystem actually has is information about something else, and that information is represented by a probability measure or predictive state.
But I see an important trick here. My information state about something else can itself be my true state of information. And this is my configuration state. A subsystem may encode an uncertain probability distribution about another configuration, but that encoded distribution can still be a definite configuration of the subsystem itself. In that sense,
uncertainty about one configuration can map onto certainty in another configuration space.
This is why I think configuration space should be understood abstractly, not merely in terms of particle properties. The configuration space of a subsystem can be its encoding microstructure. A true memory configuration state can represent an uncertain state of some other transformed configuration. That is one way to bridge the gap between “true state” and “information state.”
So I partly agree that if no subsystem has information about something, then it does not exist anywhere. Ie. if not a single observer anywhere in the universe has see it, it seems fair to say it does not exist.
When that information is later revealed, it makes a physical difference. Nearby systems update their configurations, and the relevant effective transition constraints Gamma change as well. This is similar to measurement. Before which-path information is available to the environment, the process is indifferent to the “actual value” in the public classical sense, and interference remains. Once the information is recorded in the apparatus/environment the context changes and interference disappears.
So I distinguish between true and objective. A true state is a fact, or ontological configuration state, relative to one subsystem. An objective statement is something stabilized across subsystems through interaction, and requires emergence, it is not a single "configuration".
If “exists when there is information about it” you means exists only when it is macroscopic shared information, or when all context can confirm it, then that sound like classical logic of objective beables.
/Fredrik