A quantum particle moving in a gravitational field may penetrate the classically forbidden region of the gravitational potential. This raises the question of whether the time of flight of a quantum particle in a gravitational field might deviate systematically from that of a classical particle due to tunnelling delay, representing a violation of the weak equivalence principle. I investigate this using a model quantum clock to measure the time of flight of a quantum particle in a uniform gravitational field, and show that a violation of the equivalence principle does not occur when the measurement is made far from the turning point of the classical trajectory. The results are then confirmed using the so-called dwell time definition of quantu...
Quantum particles interacting with potential barriers are ubiquitous in physics, and the question of...
Entanglement can be generated through the gravitational interaction between two massive bodies that ...
A simple model of a quantum clock is applied to the old and controversial problem of how long a part...
Universality of motion under gravity, the equivalence principle, is violated for quantum particles. ...
Using a model quantum clock, I evaluate an expression for the time of a non-relativistic quantum par...
Using a model quantum clock, I evaluate an expression for the time of a non-relativistic quantum par...
We address the question whether quantum probes in a gravitational field can be considered as test pa...
We study the free-fall of a quantum particle in the context of noncommutative quantum mechanics (NCQ...
How long does a quantum particle take to traverse a classically forbidden energy barrier? In other w...
Free fall in a uniform gravitational field is reexamined in the case of quantum states with and with...
We study the free-fall of a quantum particle in the context of noncommutative quantum mechanics (NCQ...
A consistent theory of quantum gravity will require a fully quantum formulation of the classical equ...
Free fall in a uniform gravitational field is reexamined in the case of quantum states with and with...
The transverse group associated to some continuous quantum measuring processes is analyzed in the pr...
Recently, a proper time observable for a quantum clock is introduced and it is found that the proper...
Quantum particles interacting with potential barriers are ubiquitous in physics, and the question of...
Entanglement can be generated through the gravitational interaction between two massive bodies that ...
A simple model of a quantum clock is applied to the old and controversial problem of how long a part...
Universality of motion under gravity, the equivalence principle, is violated for quantum particles. ...
Using a model quantum clock, I evaluate an expression for the time of a non-relativistic quantum par...
Using a model quantum clock, I evaluate an expression for the time of a non-relativistic quantum par...
We address the question whether quantum probes in a gravitational field can be considered as test pa...
We study the free-fall of a quantum particle in the context of noncommutative quantum mechanics (NCQ...
How long does a quantum particle take to traverse a classically forbidden energy barrier? In other w...
Free fall in a uniform gravitational field is reexamined in the case of quantum states with and with...
We study the free-fall of a quantum particle in the context of noncommutative quantum mechanics (NCQ...
A consistent theory of quantum gravity will require a fully quantum formulation of the classical equ...
Free fall in a uniform gravitational field is reexamined in the case of quantum states with and with...
The transverse group associated to some continuous quantum measuring processes is analyzed in the pr...
Recently, a proper time observable for a quantum clock is introduced and it is found that the proper...
Quantum particles interacting with potential barriers are ubiquitous in physics, and the question of...
Entanglement can be generated through the gravitational interaction between two massive bodies that ...
A simple model of a quantum clock is applied to the old and controversial problem of how long a part...