We design a quantum simulator for the Majorana equation, a non-Hamiltonian relativistic wave equation that might describe neutrinos and other exotic particles beyond the standard model. Driven by the need of the simulation, we devise a general method for implementing a number of mathematical operations that are unphysical, including charge conjugation, complex conjugation, and time reversal. Furthermore, we describe how to realize the general method in a system of trapped ions. The work opens a new front in quantum simulations
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
79 p.Quantum simulations consist in the reproduction of the dynamics of a quantum systemon a control...
Summarization: Unphysical solutions are ruled out in physical equations, as they lead to behavior th...
The understanding of symmetry operations has brought enormous advance-ments in physics, ranging from...
Summarization: The charged version of Majorana particles are unphysical and due to the violation of ...
Summarization: We introduce the term Majoranon to describe particles that obey the Majorana equation...
Abstract. We analyze the Majorana equation in the limit where the particle is at rest. We show that ...
Simulating quantum mechanics is known to be a difficult computational problem, especially when deali...
Simulating quantum mechanics is known to be a difficult computational problem, especially when deali...
It is well known that the neutrino flavor in extreme astrophysical environments changes under the ef...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
79 p.Quantum simulations consist in the reproduction of the dynamics of a quantum systemon a control...
Summarization: Unphysical solutions are ruled out in physical equations, as they lead to behavior th...
The understanding of symmetry operations has brought enormous advance-ments in physics, ranging from...
Summarization: The charged version of Majorana particles are unphysical and due to the violation of ...
Summarization: We introduce the term Majoranon to describe particles that obey the Majorana equation...
Abstract. We analyze the Majorana equation in the limit where the particle is at rest. We show that ...
Simulating quantum mechanics is known to be a difficult computational problem, especially when deali...
Simulating quantum mechanics is known to be a difficult computational problem, especially when deali...
It is well known that the neutrino flavor in extreme astrophysical environments changes under the ef...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
Backgrounds: Based on SYK-related models, Majorana particle is a fermion that is its own antiparticl...
79 p.Quantum simulations consist in the reproduction of the dynamics of a quantum systemon a control...