Chosen Fixed Point
Here is the data for the chosen fixed point.
$F_{UV}$ represents the flavor symmetries in the UV Lagrangian, and $F_{IR}$ represents the flavor symmetries in the IR. $F_{UV}$ and $F_{IR}$ can differ due to accidental symmetry enhancement.
The number of marginal operators, $n_{marginal}$, minus the dimension of flavor symmetries in IR, $|F_{IR}|$, corresponds to the coefficient of $t^6$ in the superconformal index.
# | Theory | Superpotential | Central charge $a$ | Central charge $c$ | Ratio $a/c$ | Matter field: $R$-charge | U(1) part of $F_{UV}$ | Rank of $F_{UV}$ | Rational |
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61018 | SU3adj1nf2 | ${}\phi_{1}q_{1}^{2}q_{2}$ + ${ }\phi_{1}^{2}X_{1}$ + ${ }M_{1}\phi_{1}q_{2}\tilde{q}_{1}$ + ${ }M_{1}q_{1}\tilde{q}_{1}$ + ${ }q_{2}^{2}\tilde{q}_{1}^{2}$ + ${ }M_{2}q_{1}\tilde{q}_{2}$ | 1.4042 | 1.5973 | 0.8791 | [X:[1.403], M:[0.7015, 0.7911], q:[0.6667, 0.3682], qb:[0.6318, 0.5423], phi:[0.2985]] | [X:[[2]], M:[[1], [-6]], q:[[0], [1]], qb:[[-1], [6]], phi:[[-1]]] | 1 |
Relevant Operators | Marginal Operators | $n_{marginal}$$-$$|F_{IR}|$ | Superconformal Index | Refined index |
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${}M_{1}$, ${ }M_{2}$, ${ }\phi_{1}^{3}$, ${ }q_{2}\tilde{q}_{2}$, ${ }q_{2}\tilde{q}_{1}$, ${ }\phi_{1}q_{2}\tilde{q}_{2}$, ${ }q_{1}\tilde{q}_{1}$, ${ }M_{1}^{2}$, ${ }X_{1}$, ${ }M_{1}M_{2}$, ${ }\phi_{1}q_{1}\tilde{q}_{2}$, ${ }\phi_{1}^{2}q_{2}\tilde{q}_{2}$, ${ }M_{2}^{2}$, ${ }M_{1}\phi_{1}^{3}$, ${ }\phi_{1}q_{1}\tilde{q}_{1}$, ${ }\phi_{1}^{2}q_{2}\tilde{q}_{1}$, ${ }M_{1}q_{2}\tilde{q}_{2}$, ${ }M_{2}\phi_{1}^{3}$, ${ }M_{1}q_{2}\tilde{q}_{1}$, ${ }M_{2}q_{2}\tilde{q}_{2}$, ${ }\phi_{1}^{6}$, ${ }M_{2}q_{2}\tilde{q}_{1}$, ${ }\phi_{1}^{2}q_{1}\tilde{q}_{2}$, ${ }\phi_{1}^{3}q_{2}\tilde{q}_{2}$, ${ }q_{2}^{2}\tilde{q}_{2}^{2}$, ${ }\phi_{1}^{2}q_{1}\tilde{q}_{1}$, ${ }\phi_{1}^{3}q_{2}\tilde{q}_{1}$, ${ }q_{2}^{2}\tilde{q}_{1}\tilde{q}_{2}$ | ${}\phi_{1}^{3}q_{2}^{3}$, ${ }M_{2}\phi_{1}q_{2}\tilde{q}_{2}$ | 1 | t^2.1 + t^2.37 + t^2.69 + t^2.73 + t^3. + t^3.63 + t^3.9 + 2*t^4.21 + t^4.48 + 2*t^4.52 + t^4.75 + 3*t^4.79 + t^4.84 + t^5.06 + 2*t^5.1 + 2*t^5.37 + 2*t^5.42 + t^5.46 + 2*t^5.69 + t^5.73 + t^6. + t^6.04 + 4*t^6.31 + t^6.36 + 3*t^6.58 + 3*t^6.63 + t^6.85 + 4*t^6.9 + 3*t^6.94 + t^7.12 + 2*t^7.16 + 4*t^7.21 + 3*t^7.25 + t^7.43 + 3*t^7.48 + 5*t^7.52 + 2*t^7.57 + 2*t^7.75 + 5*t^7.79 + 3*t^7.84 + 2*t^8.06 + 2*t^8.1 + 4*t^8.15 + t^8.19 + t^8.37 + 8*t^8.42 + t^8.46 + 7*t^8.69 + 3*t^8.73 + t^8.78 + 2*t^8.96 + t^8.69/y^2 - t^3.9/y - t^4.79/y - t^6./y - t^6.27/y - t^6.58/y - t^6.63/y - (2*t^6.9)/y - t^7.16/y - t^7.52/y + t^7.84/y + t^8.06/y + t^8.1/y - t^8.64/y - t^8.69/y + t^8.73/y - t^8.96/y - t^3.9*y - t^4.79*y - t^6.*y - t^6.27*y - t^6.58*y - t^6.63*y - 2*t^6.9*y - t^7.16*y - t^7.52*y + t^7.84*y + t^8.06*y + t^8.1*y - t^8.64*y - t^8.69*y + t^8.73*y - t^8.96*y + t^8.69*y^2 | g1*t^2.1 + t^2.37/g1^6 + t^2.69/g1^3 + g1^7*t^2.73 + t^3. + g1^6*t^3.63 + t^3.9/g1 + 2*g1^2*t^4.21 + t^4.48/g1^5 + 2*g1^5*t^4.52 + t^4.75/g1^12 + (3*t^4.79)/g1^2 + g1^8*t^4.84 + t^5.06/g1^9 + 2*g1*t^5.1 + (2*t^5.37)/g1^6 + 2*g1^4*t^5.42 + g1^14*t^5.46 + (2*t^5.69)/g1^3 + g1^7*t^5.73 + t^6. + g1^10*t^6.04 + 4*g1^3*t^6.31 + g1^13*t^6.36 + (3*t^6.58)/g1^4 + 3*g1^6*t^6.63 + t^6.85/g1^11 + (4*t^6.9)/g1 + 3*g1^9*t^6.94 + t^7.12/g1^18 + (2*t^7.16)/g1^8 + 4*g1^2*t^7.21 + 3*g1^12*t^7.25 + t^7.43/g1^15 + (3*t^7.48)/g1^5 + 5*g1^5*t^7.52 + 2*g1^15*t^7.57 + (2*t^7.75)/g1^12 + (5*t^7.79)/g1^2 + 3*g1^8*t^7.84 + (2*t^8.06)/g1^9 + 2*g1*t^8.1 + 4*g1^11*t^8.15 + g1^21*t^8.19 + t^8.37/g1^6 + 8*g1^4*t^8.42 + g1^14*t^8.46 + (7*t^8.69)/g1^3 + 3*g1^7*t^8.73 + g1^17*t^8.78 + (2*t^8.96)/g1^10 + t^8.69/(g1^3*y^2) - t^3.9/(g1*y) - t^4.79/(g1^2*y) - t^6./y - t^6.27/(g1^7*y) - t^6.58/(g1^4*y) - (g1^6*t^6.63)/y - (2*t^6.9)/(g1*y) - t^7.16/(g1^8*y) - (g1^5*t^7.52)/y + (g1^8*t^7.84)/y + t^8.06/(g1^9*y) + (g1*t^8.1)/y - t^8.64/(g1^13*y) - t^8.69/(g1^3*y) + (g1^7*t^8.73)/y - t^8.96/(g1^10*y) - (t^3.9*y)/g1 - (t^4.79*y)/g1^2 - t^6.*y - (t^6.27*y)/g1^7 - (t^6.58*y)/g1^4 - g1^6*t^6.63*y - (2*t^6.9*y)/g1 - (t^7.16*y)/g1^8 - g1^5*t^7.52*y + g1^8*t^7.84*y + (t^8.06*y)/g1^9 + g1*t^8.1*y - (t^8.64*y)/g1^13 - (t^8.69*y)/g1^3 + g1^7*t^8.73*y - (t^8.96*y)/g1^10 + (t^8.69*y^2)/g1^3 |
Deformation
Here is the data for the deformed fixed points from the chosen fixed point.
# | Superpotential | Central Charge $a$ | Central Charge $c$ | Ratio $a/c$ | $R$-charges | Superconformal Index | More Info. | Rational |
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Equivalent Fixed Points from Other Seed Theories
Here is a list of equivalent fixed points from other gauge theories.
# | Theory | Superpotential | Central Charge $a$ | Central Charge $c$ | Ratio $a/c$ | $R$-charges | Superconformal Index | More Info. | Rational |
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Equivalent Fixed Points from the Same Seed Theory
Below is a list of equivalent fixed points from the same seed theories.
id | Theory | Superpotential | Central Charge $a$ | Central Charge $c$ | Ratio $a/c$ | $R$-charges | More Info. | Rational |
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Previous Theory
The previous fixed point before deforming to get the chosen fixed point.
# | Theory | Superpotential | Central Charge $a$ | Central Charge $c$ | Ratio $a/c$ | $R$-charges | Superconformal Index | More Info. | Rational |
---|---|---|---|---|---|---|---|---|---|
58597 | SU3adj1nf2 | ${}\phi_{1}q_{1}^{2}q_{2}$ + ${ }\phi_{1}^{2}X_{1}$ + ${ }M_{1}\phi_{1}q_{2}\tilde{q}_{1}$ + ${ }M_{1}q_{1}\tilde{q}_{1}$ + ${ }q_{2}^{2}\tilde{q}_{1}^{2}$ | 1.3878 | 1.5707 | 0.8836 | [X:[1.396], M:[0.698], q:[0.6667, 0.3647], qb:[0.6353, 0.5213], phi:[0.302]] | t^2.09 + t^2.66 + t^2.72 + t^3. + 2*t^3.56 + t^3.91 + 2*t^4.19 + 2*t^4.47 + t^4.75 + 3*t^4.81 + t^5.09 + t^5.32 + 2*t^5.38 + t^5.44 + 2*t^5.66 + 2*t^5.72 + t^5.94 - t^3.91/y - t^4.81/y - t^6./y - t^3.91*y - t^4.81*y - t^6.*y | detail |