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- Deprecated function: TYPO3\PharStreamWrapper\Manager::__construct(): Implicitly marking parameter $resolver as nullable is deprecated, the explicit nullable type must be used instead in include_once() (line 19 of includes/file.phar.inc).
- Deprecated function: TYPO3\PharStreamWrapper\Manager::__construct(): Implicitly marking parameter $collection as nullable is deprecated, the explicit nullable type must be used instead in include_once() (line 19 of includes/file.phar.inc).
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- Deprecated function: SelectQueryInterface::getArguments(): Implicitly marking parameter $queryPlaceholder as nullable is deprecated, the explicit nullable type must be used instead in require_once() (line 1884 of includes/database/database.inc).
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- Deprecated function: SelectQueryExtender::getArguments(): Implicitly marking parameter $queryPlaceholder as nullable is deprecated, the explicit nullable type must be used instead in require_once() (line 1884 of includes/database/database.inc).
- Deprecated function: SelectQueryExtender::preExecute(): Implicitly marking parameter $query as nullable is deprecated, the explicit nullable type must be used instead in require_once() (line 1884 of includes/database/database.inc).
- Deprecated function: SelectQuery::getArguments(): Implicitly marking parameter $queryPlaceholder as nullable is deprecated, the explicit nullable type must be used instead in require_once() (line 1884 of includes/database/database.inc).
- Deprecated function: SelectQuery::preExecute(): Implicitly marking parameter $query as nullable is deprecated, the explicit nullable type must be used instead in require_once() (line 1884 of includes/database/database.inc).
There are link building
service entanglement measures which are defined by certain task
which should be achieved optimally by means of local operations and
classical communication. They are therefore called operational measures.
The most common loan modification
operational measures are
Entanglement
of distillation,
Entanglement
cost.
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Typically and operational measure involves:
- input state
- class of allowed operations by means of which input state should be
transformed which is the class of local operations and classical
communication.
- output state
The typical task is to obtain the greatest amount of
output states given certain number of input states. Then the operational
measure equals the optimal rate of number of output
states that can be obtained from input states via LOCC, per number of
input states (in asymptotic limit).
Formally one defines operational measure as follows: Let ρ and σ be the input and output state.
Consider a protocol i.e. sequence of LOCC operations P = {Pn}
such, that Pn(ρ⊗n) = τn
for each n. If limn → ∞||τn − σ⊗m|| = 0,
we say that the protocol P achieves rate given by
RP(ρ→σ):=lim sup.
Then the operational measure Eop is
defined as Eop(ρ) = supPRP(ρ → σ)
In place of the input state and output state in the above definition
one can consider the set of input state and the set of output states
respectively. In such case the supremum in definition of Eop is
taken also over input and output states.
Moreover the task may by modified, so that the otput state maximises
certain function (see
Distillable
key).
Category:
Handbook of Quantum Information
Category:
Entanglement
Last modified:
Monday, October 26, 2015 - 17:56