[da53353] | 1 | .. mag_help.rst |
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| 2 | |
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| 3 | .. This is a port of text from the original SasView html help file to ReSTructured text |
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| 4 | .. by S King, ISIS, during SasView CodeCamp-III in Feb 2015. |
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| 5 | |
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[6aad2e8] | 6 | .. |inlineimage004| image:: sm_image004.png |
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| 7 | .. |inlineimage005| image:: sm_image005.png |
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| 8 | .. |inlineimage008| image:: sm_image008.png |
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| 9 | .. |inlineimage009| image:: sm_image009.png |
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| 10 | .. |inlineimage010| image:: sm_image010.png |
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| 11 | .. |inlineimage011| image:: sm_image011.png |
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| 12 | .. |inlineimage012| image:: sm_image012.png |
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| 13 | .. |inlineimage018| image:: sm_image018.png |
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| 14 | .. |inlineimage019| image:: sm_image019.png |
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[da53353] | 15 | |
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| 16 | |
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| 17 | .. ZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZ |
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| 18 | |
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| 19 | Polarisation/Magnetic Scattering |
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| 20 | -------------------------------- |
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| 21 | |
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[5ed76f8] | 22 | Magnetic scattering is implemented in five (2D) models |
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[da53353] | 23 | |
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[eca66a1] | 24 | * *sphere* |
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| 25 | * *core_shell_sphere* |
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| 26 | * *core_multi_shell* |
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| 27 | * *cylinder* |
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| 28 | * *parallelepiped* |
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[da53353] | 29 | |
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[5ed76f8] | 30 | In general, the scattering length density (SLD, = $\beta$) in each region where the |
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[3b67c30] | 31 | SLD is uniform, is a combination of the nuclear and magnetic SLDs and, for polarised |
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| 32 | neutrons, also depends on the spin states of the neutrons. |
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| 33 | |
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[5ed76f8] | 34 | For magnetic scattering, only the magnetization component, $M_\perp$, |
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| 35 | perpendicular to the scattering vector $Q$ contributes to the the magnetic |
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[3b67c30] | 36 | scattering length. |
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[da53353] | 37 | |
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[6aad2e8] | 38 | .. image:: mag_vector.png |
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[da53353] | 39 | |
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| 40 | The magnetic scattering length density is then |
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| 41 | |
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[6aad2e8] | 42 | .. image:: dm_eq.png |
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[da53353] | 43 | |
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[5ed76f8] | 44 | where $\gamma = -1.913$ is the gyromagnetic ratio, $\mu_B$ is the |
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| 45 | Bohr magneton, $r_0$ is the classical radius of electron, and $\sigma$ |
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[3b67c30] | 46 | is the Pauli spin. |
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| 47 | |
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| 48 | Assuming that incident neutrons are polarized parallel (+) and anti-parallel (-) |
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| 49 | to the *x'* axis, the possible spin states after the sample are then |
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[da53353] | 50 | |
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[3b67c30] | 51 | No spin-flips (+ +) and (- -) |
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[da53353] | 52 | |
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[3b67c30] | 53 | Spin-flips (+ -) and (- +) |
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[da53353] | 54 | |
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[6aad2e8] | 55 | .. image:: M_angles_pic.png |
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[da53353] | 56 | |
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[5ed76f8] | 57 | If the angles of the $Q$ vector and the spin-axis (*x'*) to the *x*-axis are $\phi$ |
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| 58 | and $\theta_\text{up}$, respectively, then, depending on the spin state of the |
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[3b67c30] | 59 | neutrons, the scattering length densities, including the nuclear scattering |
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[5ed76f8] | 60 | length density ($\beta_N$) are |
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[da53353] | 61 | |
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[6aad2e8] | 62 | .. image:: sld1.png |
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[da53353] | 63 | |
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[3b67c30] | 64 | when there are no spin-flips, and |
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[da53353] | 65 | |
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[6aad2e8] | 66 | .. image:: sld2.png |
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[da53353] | 67 | |
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[3b67c30] | 68 | when there are, and |
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[da53353] | 69 | |
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[6aad2e8] | 70 | .. image:: mxp.png |
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[da53353] | 71 | |
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[6aad2e8] | 72 | .. image:: myp.png |
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[da53353] | 73 | |
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[6aad2e8] | 74 | .. image:: mzp.png |
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[da53353] | 75 | |
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[6aad2e8] | 76 | .. image:: mqx.png |
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[da53353] | 77 | |
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[6aad2e8] | 78 | .. image:: mqy.png |
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[da53353] | 79 | |
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[5ed76f8] | 80 | Here, $M_{0x}$, $M_{0y}$ and $M_{0z}$ are the $x$, $y$ and $z$ components |
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| 81 | of the magnetization vector given in the laboratory $xyz$ frame given by |
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[da53353] | 82 | |
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[6aad2e8] | 83 | .. image:: m0x_eq.png |
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[da53353] | 84 | |
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[6aad2e8] | 85 | .. image:: m0y_eq.png |
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[da53353] | 86 | |
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[6aad2e8] | 87 | .. image:: m0z_eq.png |
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[da53353] | 88 | |
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[5ed76f8] | 89 | and the magnetization angles $\theta_M$ and $\phi_M$ are defined in |
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[3b67c30] | 90 | the figure above. |
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[da53353] | 91 | |
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[3b67c30] | 92 | The user input parameters are: |
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[da53353] | 93 | |
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[3b67c30] | 94 | =========== ================================================================ |
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[5ed76f8] | 95 | M0_sld = $D_M M_0$ |
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| 96 | Up_theta = $\theta_\text{up}$ |
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| 97 | M_theta = $\theta_M$ |
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| 98 | M_phi = $\phi_M$ |
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[3b67c30] | 99 | Up_frac_i = (spin up)/(spin up + spin down) neutrons *before* the sample |
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| 100 | Up_frac_f = (spin up)/(spin up + spin down) neutrons *after* the sample |
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| 101 | =========== ================================================================ |
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[da53353] | 102 | |
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[3b67c30] | 103 | *Note:* The values of the 'Up_frac_i' and 'Up_frac_f' must be in the range 0 to 1. |
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[da53353] | 104 | |
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| 105 | .. ZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZZ |
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[3b67c30] | 106 | |
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| 107 | .. note:: This help document was last changed by Steve King, 02May2015 |
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