Beispiel #1
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 def test_error_operator_all_diagonal(self):
     terms = [
         QubitOperator(()),
         QubitOperator('Z0 Z1 Z2'),
         QubitOperator('Z0 Z3'),
         QubitOperator('Z0 Z1 Z2 Z3')
     ]
     zero = QubitOperator()
     self.assertTrue(zero.isclose(error_operator(terms)))
Beispiel #2
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    def test_z(self):
        pauli_z = QubitOperator(((2, 'Z'), ))
        transmed_z = reverse_jordan_wigner(pauli_z)

        expected = (FermionOperator(()) + FermionOperator(
            ((2, 1), (2, 0)), -2.))
        self.assertTrue(transmed_z.isclose(expected))

        retransmed_z = jordan_wigner(transmed_z)
        self.assertTrue(pauli_z.isclose(retransmed_z))
Beispiel #3
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    def test_xy(self):
        xy = QubitOperator(((4, 'X'), (5, 'Y')), -2.j)
        transmed_xy = reverse_jordan_wigner(xy)
        retransmed_xy = jordan_wigner(transmed_xy)

        expected1 = -2j * (FermionOperator(((4, 1), ), 1j) - FermionOperator(
            ((4, 0), ), 1j))
        expected2 = (FermionOperator(((5, 1), )) - FermionOperator(((5, 0), )))
        expected = expected1 * expected2

        self.assertTrue(xy.isclose(retransmed_xy))
        self.assertTrue(
            normal_ordered(transmed_xy).isclose(normal_ordered(expected)))
Beispiel #4
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    def test_yy(self):
        yy = QubitOperator(((2, 'Y'), (3, 'Y')), 2.)
        transmed_yy = reverse_jordan_wigner(yy)
        retransmed_yy = jordan_wigner(transmed_yy)

        expected1 = -(FermionOperator(((2, 1), ), 2.) + FermionOperator(
            ((2, 0), ), 2.))
        expected2 = (FermionOperator(((3, 1), )) - FermionOperator(((3, 0), )))
        expected = expected1 * expected2

        self.assertTrue(yy.isclose(retransmed_yy))
        self.assertTrue(
            normal_ordered(transmed_yy).isclose(normal_ordered(expected)))
Beispiel #5
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    def test_xx(self):
        xx = QubitOperator(((3, 'X'), (4, 'X')), 2.)
        transmed_xx = reverse_jordan_wigner(xx)
        retransmed_xx = jordan_wigner(transmed_xx)

        expected1 = (FermionOperator(((3, 1), ), 2.) - FermionOperator(
            ((3, 0), ), 2.))
        expected2 = (FermionOperator(((4, 1), ), 1.) + FermionOperator(
            ((4, 0), ), 1.))
        expected = expected1 * expected2

        self.assertTrue(xx.isclose(retransmed_xx))
        self.assertTrue(
            normal_ordered(transmed_xx).isclose(normal_ordered(expected)))
Beispiel #6
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    def test_yx(self):
        yx = QubitOperator(((0, 'Y'), (1, 'X')), -0.5)
        transmed_yx = reverse_jordan_wigner(yx)
        retransmed_yx = jordan_wigner(transmed_yx)

        expected1 = 1j * (FermionOperator(((0, 1), )) + FermionOperator(
            ((0, 0), )))
        expected2 = -0.5 * (FermionOperator(((1, 1), )) + FermionOperator(
            ((1, 0), )))
        expected = expected1 * expected2

        self.assertTrue(yx.isclose(retransmed_yx))
        self.assertTrue(
            normal_ordered(transmed_yx).isclose(normal_ordered(expected)))
Beispiel #7
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 def test_yzxz(self):
     yzxz = QubitOperator(((0, 'Y'), (1, 'Z'), (2, 'X'), (3, 'Z')))
     transmed_yzxz = reverse_jordan_wigner(yzxz)
     retransmed_yzxz = jordan_wigner(transmed_yzxz)
     self.assertTrue(yzxz.isclose(retransmed_yzxz))
Beispiel #8
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 def test_y(self):
     pauli_y = QubitOperator(((2, 'Y'), ))
     transmed_y = reverse_jordan_wigner(pauli_y)
     retransmed_y = jordan_wigner(transmed_y)
     self.assertTrue(pauli_y.isclose(retransmed_y))
Beispiel #9
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 def test_x(self):
     pauli_x = QubitOperator(((2, 'X'), ))
     transmed_x = reverse_jordan_wigner(pauli_x)
     retransmed_x = jordan_wigner(transmed_x)
     self.assertTrue(pauli_x.isclose(retransmed_x))
Beispiel #10
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class ReverseJWTest(unittest.TestCase):
    def setUp(self):
        self.coefficient = 0.5
        self.operators = ((1, 'X'), (3, 'Y'), (8, 'Z'))
        self.term = QubitOperator(self.operators, self.coefficient)
        self.identity = QubitOperator(())
        self.coefficient_a = 6.7j
        self.coefficient_b = -88.
        self.operators_a = ((3, 'Z'), (1, 'Y'), (4, 'Y'))
        self.operators_b = ((2, 'X'), (3, 'Y'))
        self.operator_a = QubitOperator(self.operators_a, self.coefficient_a)
        self.operator_b = QubitOperator(self.operators_b, self.coefficient_b)
        self.operator_ab = self.operator_a + self.operator_b
        self.qubit_operator = QubitOperator(((1, 'X'), (3, 'Y'), (8, 'Z')),
                                            0.5)
        self.qubit_operator += QubitOperator(((1, 'Z'), (3, 'X'), (8, 'Z')),
                                             1.2)

    def test_identity_jwterm(self):
        self.assertTrue(
            FermionOperator(
                ()).isclose(reverse_jordan_wigner(QubitOperator(()))))

    def test_x(self):
        pauli_x = QubitOperator(((2, 'X'), ))
        transmed_x = reverse_jordan_wigner(pauli_x)
        retransmed_x = jordan_wigner(transmed_x)
        self.assertTrue(pauli_x.isclose(retransmed_x))

    def test_y(self):
        pauli_y = QubitOperator(((2, 'Y'), ))
        transmed_y = reverse_jordan_wigner(pauli_y)
        retransmed_y = jordan_wigner(transmed_y)
        self.assertTrue(pauli_y.isclose(retransmed_y))

    def test_z(self):
        pauli_z = QubitOperator(((2, 'Z'), ))
        transmed_z = reverse_jordan_wigner(pauli_z)

        expected = (FermionOperator(()) + FermionOperator(
            ((2, 1), (2, 0)), -2.))
        self.assertTrue(transmed_z.isclose(expected))

        retransmed_z = jordan_wigner(transmed_z)
        self.assertTrue(pauli_z.isclose(retransmed_z))

    def test_identity(self):
        n_qubits = 5
        transmed_i = reverse_jordan_wigner(self.identity, n_qubits)
        expected_i = FermionOperator(())
        self.assertTrue(transmed_i.isclose(expected_i))
        retransmed_i = jordan_wigner(transmed_i)
        self.assertTrue(self.identity.isclose(retransmed_i))

    def test_zero(self):
        n_qubits = 5
        transmed_i = reverse_jordan_wigner(QubitOperator(), n_qubits)
        expected_i = FermionOperator()
        self.assertTrue(transmed_i.isclose(expected_i))

        retransmed_i = jordan_wigner(transmed_i)
        self.assertTrue(expected_i.isclose(retransmed_i))

    def test_yzxz(self):
        yzxz = QubitOperator(((0, 'Y'), (1, 'Z'), (2, 'X'), (3, 'Z')))
        transmed_yzxz = reverse_jordan_wigner(yzxz)
        retransmed_yzxz = jordan_wigner(transmed_yzxz)
        self.assertTrue(yzxz.isclose(retransmed_yzxz))

    def test_term(self):
        transmed_term = reverse_jordan_wigner(self.term)
        retransmed_term = jordan_wigner(transmed_term)
        self.assertTrue(self.term.isclose(retransmed_term))

    def test_xx(self):
        xx = QubitOperator(((3, 'X'), (4, 'X')), 2.)
        transmed_xx = reverse_jordan_wigner(xx)
        retransmed_xx = jordan_wigner(transmed_xx)

        expected1 = (FermionOperator(((3, 1), ), 2.) - FermionOperator(
            ((3, 0), ), 2.))
        expected2 = (FermionOperator(((4, 1), ), 1.) + FermionOperator(
            ((4, 0), ), 1.))
        expected = expected1 * expected2

        self.assertTrue(xx.isclose(retransmed_xx))
        self.assertTrue(
            normal_ordered(transmed_xx).isclose(normal_ordered(expected)))

    def test_yy(self):
        yy = QubitOperator(((2, 'Y'), (3, 'Y')), 2.)
        transmed_yy = reverse_jordan_wigner(yy)
        retransmed_yy = jordan_wigner(transmed_yy)

        expected1 = -(FermionOperator(((2, 1), ), 2.) + FermionOperator(
            ((2, 0), ), 2.))
        expected2 = (FermionOperator(((3, 1), )) - FermionOperator(((3, 0), )))
        expected = expected1 * expected2

        self.assertTrue(yy.isclose(retransmed_yy))
        self.assertTrue(
            normal_ordered(transmed_yy).isclose(normal_ordered(expected)))

    def test_xy(self):
        xy = QubitOperator(((4, 'X'), (5, 'Y')), -2.j)
        transmed_xy = reverse_jordan_wigner(xy)
        retransmed_xy = jordan_wigner(transmed_xy)

        expected1 = -2j * (FermionOperator(((4, 1), ), 1j) - FermionOperator(
            ((4, 0), ), 1j))
        expected2 = (FermionOperator(((5, 1), )) - FermionOperator(((5, 0), )))
        expected = expected1 * expected2

        self.assertTrue(xy.isclose(retransmed_xy))
        self.assertTrue(
            normal_ordered(transmed_xy).isclose(normal_ordered(expected)))

    def test_yx(self):
        yx = QubitOperator(((0, 'Y'), (1, 'X')), -0.5)
        transmed_yx = reverse_jordan_wigner(yx)
        retransmed_yx = jordan_wigner(transmed_yx)

        expected1 = 1j * (FermionOperator(((0, 1), )) + FermionOperator(
            ((0, 0), )))
        expected2 = -0.5 * (FermionOperator(((1, 1), )) + FermionOperator(
            ((1, 0), )))
        expected = expected1 * expected2

        self.assertTrue(yx.isclose(retransmed_yx))
        self.assertTrue(
            normal_ordered(transmed_yx).isclose(normal_ordered(expected)))

    def test_jw_term_bad_type(self):
        with self.assertRaises(TypeError):
            reverse_jordan_wigner(3)

    def test_reverse_jordan_wigner(self):
        transmed_operator = reverse_jordan_wigner(self.qubit_operator)
        retransmed_operator = jordan_wigner(transmed_operator)
        self.assertTrue(self.qubit_operator.isclose(retransmed_operator))

    def test_reverse_jw_linearity(self):
        term1 = QubitOperator(((0, 'X'), (1, 'Y')), -0.5)
        term2 = QubitOperator(((0, 'Y'), (1, 'X'), (2, 'Y'), (3, 'Y')), -1j)

        op12 = reverse_jordan_wigner(term1) - reverse_jordan_wigner(term2)
        self.assertTrue(op12.isclose(reverse_jordan_wigner(term1 - term2)))

    def test_bad_type(self):
        with self.assertRaises(TypeError):
            reverse_jordan_wigner(3)