The idea that asymptotic de Sitter space can be described by a finite Hilbert Space implies that any quantum measurement has an irreducible innacuracy. We argue that this prevents any measurement from verifying the existence of the Poincare recurrences that occur in the mathematical formulation of quantum de Sitter (dS) space. It also implies that the mathematical quantum theory of dS space is not unique. There will be many different Hamiltonians, which give the same results, within the uncertainty in all possible measurements
This is a book about the Hilbert space formulation of quantum mechanics and its measurement theory. ...
The apparent random outcome of a quantum measurement is conjectured to be fundamentally determined b...
Unitarity is a pillar of quantum theory. Nevertheless, it is also a source of several of its concept...
This is a summary of two lectures I gave at the Davis Conference on Cosmic Inflation. I explain why ...
We study the quantum measurement problem in the context of an infinite, statistically uniform space,...
Quantum mechanics introduces the concept of probability at the fundamental level, yielding the measu...
It is shown that the attempt to extend the notion of ideal measurement to quantum field theory leads...
We argue that it is fundamentally impossible to recover information about quantum superpositions whe...
We argue that, under certain plausible assumptions, de Sitter space settles into a quiescent vacuum ...
According to the `Cosmological Central Dogma', de Sitter space can be viewed as a quantum mechanical...
We argue that, under certain plausible assumptions, de Sitter space settles into a quiescent vacuum ...
AbstractWe show that discretization of spacetime naturally suggests discretization of Hilbert space ...
We argue that, under certain plausible assumptions, de Sitter space settles into a quiescent vacuum ...
We show that Hilbert spaces should not be considered the ``correct'' spaces to represent quantum sta...
We argue that it is fundamentally impossible to recover information about quantum superpositions whe...
This is a book about the Hilbert space formulation of quantum mechanics and its measurement theory. ...
The apparent random outcome of a quantum measurement is conjectured to be fundamentally determined b...
Unitarity is a pillar of quantum theory. Nevertheless, it is also a source of several of its concept...
This is a summary of two lectures I gave at the Davis Conference on Cosmic Inflation. I explain why ...
We study the quantum measurement problem in the context of an infinite, statistically uniform space,...
Quantum mechanics introduces the concept of probability at the fundamental level, yielding the measu...
It is shown that the attempt to extend the notion of ideal measurement to quantum field theory leads...
We argue that it is fundamentally impossible to recover information about quantum superpositions whe...
We argue that, under certain plausible assumptions, de Sitter space settles into a quiescent vacuum ...
According to the `Cosmological Central Dogma', de Sitter space can be viewed as a quantum mechanical...
We argue that, under certain plausible assumptions, de Sitter space settles into a quiescent vacuum ...
AbstractWe show that discretization of spacetime naturally suggests discretization of Hilbert space ...
We argue that, under certain plausible assumptions, de Sitter space settles into a quiescent vacuum ...
We show that Hilbert spaces should not be considered the ``correct'' spaces to represent quantum sta...
We argue that it is fundamentally impossible to recover information about quantum superpositions whe...
This is a book about the Hilbert space formulation of quantum mechanics and its measurement theory. ...
The apparent random outcome of a quantum measurement is conjectured to be fundamentally determined b...
Unitarity is a pillar of quantum theory. Nevertheless, it is also a source of several of its concept...