What is the quantum state of the universe? Although there have been several interesting suggestions, the question remains open. In this paper, I consider a natural choice for the universal quantum state arising from the Past Hypothesis, a boundary condition that accounts for the time-asymmetry of the universe. The natural choice is given not by a wave function (representing a pure state) but by a density matrix (representing a mixed state). I begin by classifying quantum theories into two types: theories with a fundamental wave function and theories with a fundamental density matrix. The Past Hypothesis is compatible with infinitely many initial wave functions, none of which seems to be particularly natural. However, once we turn to...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
Quantum mechanics with a fundamental density matrix (W-QM) has been proposed and discussed recently...
What is the quantum state of the universe? Although there have been several interesting suggestions,...
What is the quantum state of the universe? Although there have been several interesting suggestions,...
What is the quantum state of the universe? Although there have been several interesting suggestions,...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
Quantum mechanics with a fundamental density matrix (W-QM) has been proposed and discussed recently...
What is the quantum state of the universe? Although there have been several interesting suggestions,...
What is the quantum state of the universe? Although there have been several interesting suggestions,...
What is the quantum state of the universe? Although there have been several interesting suggestions,...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
In a quantum universe with a strong arrow of time, we postulate a low-entropy boundary condition (th...
Quantum mechanics with a fundamental density matrix (W-QM) has been proposed and discussed recently...