Landscape




$a$ =

$c$ =

$\leq a \leq$

$\leq c \leq$

id =





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.

#TheorySuperpotentialCentral charge $a$Central charge $c$Ratio $a/c$Matter field: $R$-chargeU(1) part of $F_{UV}$Rank of $F_{UV}$Rational
57769 SU3adj1nf2 ${}q_{1}q_{2}\tilde{q}_{1}^{2}$ + ${ }M_{1}q_{2}\tilde{q}_{2}$ + ${ }\phi_{1}^{2}X_{1}$ + ${ }M_{2}q_{2}\tilde{q}_{1}$ + ${ }M_{2}q_{1}\tilde{q}_{2}$ 1.4571 1.6446 0.886 [X:[1.3494], M:[0.9275, 0.9758], q:[0.4879, 0.5362], qb:[0.4879, 0.5362], phi:[0.3253]] [X:[[0, 2]], M:[[0, -9], [0, -3]], q:[[-1, 3], [-1, 9]], qb:[[1, -6], [1, 0]], phi:[[0, -1]]] 2
Relevant OperatorsMarginal Operators$n_{marginal}$$-$$|F_{IR}|$Superconformal IndexRefined index
${}M_{1}$, ${ }M_{2}$, ${ }\phi_{1}^{3}$, ${ }q_{1}\tilde{q}_{1}$, ${ }q_{1}\tilde{q}_{2}$, ${ }\phi_{1}q_{1}\tilde{q}_{1}$, ${ }\phi_{1}q_{2}\tilde{q}_{1}$, ${ }\phi_{1}q_{1}\tilde{q}_{2}$, ${ }X_{1}$, ${ }\phi_{1}q_{2}\tilde{q}_{2}$, ${ }\phi_{1}^{2}q_{1}\tilde{q}_{1}$, ${ }\phi_{1}^{2}q_{2}\tilde{q}_{1}$, ${ }\phi_{1}^{2}q_{1}\tilde{q}_{2}$, ${ }\phi_{1}^{2}q_{2}\tilde{q}_{2}$, ${ }\phi_{1}\tilde{q}_{1}^{2}\tilde{q}_{2}$, ${ }\phi_{1}q_{1}^{2}q_{2}$, ${ }M_{1}^{2}$, ${ }\phi_{1}\tilde{q}_{1}\tilde{q}_{2}^{2}$, ${ }\phi_{1}q_{1}q_{2}^{2}$, ${ }M_{1}M_{2}$, ${ }M_{1}\phi_{1}^{3}$, ${ }M_{1}q_{1}\tilde{q}_{1}$, ${ }M_{2}^{2}$, ${ }M_{2}\phi_{1}^{3}$, ${ }\phi_{1}^{6}$, ${ }M_{2}q_{1}\tilde{q}_{1}$, ${ }\phi_{1}^{3}q_{1}\tilde{q}_{1}$, ${ }M_{1}q_{1}\tilde{q}_{2}$ ${}\phi_{1}^{3}q_{1}\tilde{q}_{2}$, ${ }q_{1}^{2}\tilde{q}_{1}\tilde{q}_{2}$ -1 t^2.78 + 3*t^2.93 + t^3.07 + t^3.9 + 3*t^4.05 + t^4.19 + t^4.88 + 2*t^5.02 + t^5.17 + 2*t^5.51 + t^5.57 + 2*t^5.66 + 3*t^5.71 + 5*t^5.86 - t^6. - t^6.14 + 2*t^6.49 + 2*t^6.63 + t^6.69 + 4*t^6.83 + 8*t^6.98 + 4*t^7.12 + t^7.27 + 2*t^7.32 + t^7.66 + 2*t^7.75 + 4*t^7.81 + 8*t^7.95 + 7*t^8.1 + 3*t^8.24 + t^8.35 + t^8.39 + 2*t^8.44 + 3*t^8.49 + 2*t^8.58 + 5*t^8.64 + 5*t^8.78 - 2*t^8.93 + t^8.93/y^2 - t^3.98/y - t^4.95/y - t^6.76/y - (3*t^6.9)/y - t^7.05/y - t^7.73/y - (3*t^7.88)/y - t^8.02/y + (3*t^8.71)/y + (3*t^8.86)/y - t^3.98*y - t^4.95*y - t^6.76*y - 3*t^6.9*y - t^7.05*y - t^7.73*y - 3*t^7.88*y - t^8.02*y + 3*t^8.71*y + 3*t^8.86*y + t^8.93*y^2 t^2.78/g2^9 + (3*t^2.93)/g2^3 + g2^3*t^3.07 + t^3.9/g2^4 + 3*g2^2*t^4.05 + g2^8*t^4.19 + t^4.88/g2^5 + 2*g2*t^5.02 + g2^7*t^5.17 + (g1^3*t^5.51)/g2^13 + (g2^14*t^5.51)/g1^3 + t^5.57/g2^18 + (g1^3*t^5.66)/g2^7 + (g2^20*t^5.66)/g1^3 + (3*t^5.71)/g2^12 + (5*t^5.86)/g2^6 - t^6. - g2^6*t^6.14 + (g1^3*t^6.49)/g2^14 + (g2^13*t^6.49)/g1^3 + (g1^3*t^6.63)/g2^8 + (g2^19*t^6.63)/g1^3 + t^6.69/g2^13 + (4*t^6.83)/g2^7 + (8*t^6.98)/g2 + 4*g2^5*t^7.12 + g2^11*t^7.27 + (g1^3*t^7.32)/g2^21 + (g2^6*t^7.32)/g1^3 + t^7.66/g2^14 + (g1^3*t^7.75)/g2^3 + (g2^24*t^7.75)/g1^3 + (4*t^7.81)/g2^8 + (8*t^7.95)/g2^2 + 7*g2^4*t^8.1 + 3*g2^10*t^8.24 + t^8.35/g2^27 + g2^16*t^8.39 + (g1^3*t^8.44)/g2^16 + (g2^11*t^8.44)/g1^3 + (3*t^8.49)/g2^21 + (g1^3*t^8.58)/g2^10 + (g2^17*t^8.58)/g1^3 + (5*t^8.64)/g2^15 + (5*t^8.78)/g2^9 - (2*t^8.93)/g2^3 + t^8.93/(g2^3*y^2) - t^3.98/(g2*y) - t^4.95/(g2^2*y) - t^6.76/(g2^10*y) - (3*t^6.9)/(g2^4*y) - (g2^2*t^7.05)/y - t^7.73/(g2^11*y) - (3*t^7.88)/(g2^5*y) - (g2*t^8.02)/y + (3*t^8.71)/(g2^12*y) + (3*t^8.86)/(g2^6*y) - (t^3.98*y)/g2 - (t^4.95*y)/g2^2 - (t^6.76*y)/g2^10 - (3*t^6.9*y)/g2^4 - g2^2*t^7.05*y - (t^7.73*y)/g2^11 - (3*t^7.88*y)/g2^5 - g2*t^8.02*y + (3*t^8.71*y)/g2^12 + (3*t^8.86*y)/g2^6 + (t^8.93*y^2)/g2^3


Deformation

Here is the data for the deformed fixed points from the chosen fixed point.

#SuperpotentialCentral Charge $a$ Central Charge $c$ Ratio $a/c$$R$-chargesSuperconformal IndexMore Info.Rational


Equivalent Fixed Points from Other Seed Theories

Here is a list of equivalent fixed points from other gauge theories.

#TheorySuperpotentialCentral Charge $a$ Central Charge $c$ Ratio $a/c$$R$-chargesSuperconformal IndexMore Info.Rational


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


Previous Theory

The previous fixed point before deforming to get the chosen fixed point.

#TheorySuperpotentialCentral Charge $a$ Central Charge $c$ Ratio $a/c$$R$-chargesSuperconformal IndexMore Info.Rational
57284 SU3adj1nf2 ${}q_{1}q_{2}\tilde{q}_{1}^{2}$ + ${ }M_{1}q_{2}\tilde{q}_{2}$ + ${ }\phi_{1}^{2}X_{1}$ + ${ }M_{2}q_{2}\tilde{q}_{1}$ 1.4577 1.6478 0.8847 [X:[1.3444], M:[0.9302, 0.9634], q:[0.4722, 0.5455], qb:[0.4912, 0.5243], phi:[0.3278]] t^2.791 + 2*t^2.89 + t^2.95 + t^2.989 + t^3.873 + t^3.973 + t^4.033 + t^4.093 + t^4.193 + t^4.857 + t^4.956 + t^5.077 + t^5.176 + t^5.453 + t^5.503 + t^5.581 + t^5.603 + t^5.673 + 2*t^5.681 + t^5.741 + 3*t^5.78 + 2*t^5.84 + 2*t^5.879 + t^5.94 + t^5.979 - 4*t^6. - t^3.983/y - t^4.967/y - t^3.983*y - t^4.967*y detail