The paper interprets the concept “operator in the separable complex Hilbert space” (particalry, “Hermitian operator” as “quantity” is defined in the “classical” quantum mechanics) by that of “quantum information”. As far as wave function is the characteristic function of the probability (density) distribution for all possible values of a certain quantity to be measured, the definition of quantity in quantum mechanics means any unitary change of the probability (density) distribution. It can be represented as a particular case of “unitary” qubits. The converse interpretation of any qubits as referring to a certain physical quantity implies its generalization to non-Hermiti...
Quantum mechanics involves a generalized form of information, that of quantum information. It is the...
Quantum mechanics involves a generalized form of information, that of quantum information. It is the...
The concept of quantum information is introduced as both normed superposition of two orthogonal sub-...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
Quantum mechanics involves a generalized form of information, that of quantum information. It is the...
Quantum mechanics involves a generalized form of information, that of quantum information. It is the...
Quantum mechanics involves a generalized form of information, that of quantum information. It is the...
The concept of quantum information is introduced as both normed superposition of two orthogonal sub-...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The paper interprets the concept “operator in the separable complex Hilbert space” (partic...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
The quantum information introduced by quantum mechanics is equivalent to that generalization of the ...
Quantum mechanics involves a generalized form of information, that of quantum information. It is the...
Quantum mechanics involves a generalized form of information, that of quantum information. It is the...
Quantum mechanics involves a generalized form of information, that of quantum information. It is the...
The concept of quantum information is introduced as both normed superposition of two orthogonal sub-...