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
1274 SU2adj1nf2 ${}M_{1}q_{1}q_{2}$ + ${ }\phi_{1}^{2}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{2}q_{1}\tilde{q}_{1}$ + ${ }M_{2}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{3}q_{2}\tilde{q}_{1}$ + ${ }M_{4}q_{1}\tilde{q}_{2}$ + ${ }M_{5}q_{2}\tilde{q}_{2}$ + ${ }M_{6}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{3}M_{7}$ 0.791 0.9858 0.8024 [M:[0.7646, 0.7646, 0.7921, 0.7371, 0.7646, 0.7646, 1.2079], q:[0.6314, 0.604], qb:[0.604, 0.6314], phi:[0.3823]] [M:[[-2, -2], [-2, -2], [-4, 0], [0, -4], [-2, -2], [-2, -2], [4, 0]], q:[[0, 2], [2, 0]], qb:[[2, 0], [0, 2]], phi:[[-1, -1]]] 2
Relevant OperatorsMarginal Operators$n_{marginal}$$-$$|F_{IR}|$Superconformal IndexRefined index
${}M_{4}$, ${ }M_{1}$, ${ }M_{2}$, ${ }M_{5}$, ${ }M_{6}$, ${ }\phi_{1}^{2}$, ${ }M_{7}$, ${ }M_{4}^{2}$, ${ }M_{1}M_{4}$, ${ }M_{2}M_{4}$, ${ }M_{4}M_{5}$, ${ }M_{4}M_{6}$, ${ }M_{4}\phi_{1}^{2}$, ${ }M_{1}^{2}$, ${ }M_{1}M_{2}$, ${ }M_{2}^{2}$, ${ }M_{1}M_{5}$, ${ }M_{2}M_{5}$, ${ }M_{5}^{2}$, ${ }M_{1}M_{6}$, ${ }M_{2}M_{6}$, ${ }M_{5}M_{6}$, ${ }M_{6}^{2}$, ${ }M_{1}\phi_{1}^{2}$, ${ }M_{2}\phi_{1}^{2}$, ${ }M_{5}\phi_{1}^{2}$, ${ }M_{6}\phi_{1}^{2}$, ${ }\phi_{1}^{4}$, ${ }\phi_{1}q_{2}^{2}$, ${ }\phi_{1}q_{2}\tilde{q}_{1}$, ${ }\phi_{1}\tilde{q}_{1}^{2}$, ${ }\phi_{1}q_{1}q_{2}$, ${ }\phi_{1}q_{1}\tilde{q}_{1}$, ${ }\phi_{1}q_{2}\tilde{q}_{2}$, ${ }\phi_{1}\tilde{q}_{1}\tilde{q}_{2}$, ${ }\phi_{1}q_{1}^{2}$, ${ }\phi_{1}q_{1}\tilde{q}_{2}$, ${ }\phi_{1}\tilde{q}_{2}^{2}$, ${ }M_{4}M_{7}$, ${ }M_{1}M_{7}$, ${ }M_{2}M_{7}$, ${ }M_{5}M_{7}$, ${ }M_{6}M_{7}$, ${ }M_{7}\phi_{1}^{2}$ ${}$ -8 t^2.211 + 5*t^2.294 + t^3.624 + t^4.423 + 5*t^4.505 + 15*t^4.588 + 3*t^4.771 + 4*t^4.853 + 3*t^4.936 + t^5.835 + t^5.918 - 8*t^6. - 4*t^6.082 + t^6.634 + 5*t^6.716 + 15*t^6.799 + 35*t^6.881 + 3*t^6.982 + 15*t^7.064 + 16*t^7.147 + 11*t^7.229 + t^7.248 - t^7.412 + t^8.047 + t^8.129 - 10*t^8.211 - 40*t^8.294 - 17*t^8.376 + 3*t^8.395 - 3*t^8.477 - 8*t^8.559 - 7*t^8.642 + t^8.845 + 5*t^8.928 - t^4.147/y - t^6.358/y - (5*t^6.441)/y + (5*t^7.505)/y + (10*t^7.588)/y + (5*t^7.853)/y + t^7.936/y - t^8.57/y - (5*t^8.652)/y - (15*t^8.734)/y + t^8.835/y + (5*t^8.918)/y - t^4.147*y - t^6.358*y - 5*t^6.441*y + 5*t^7.505*y + 10*t^7.588*y + 5*t^7.853*y + t^7.936*y - t^8.57*y - 5*t^8.652*y - 15*t^8.734*y + t^8.835*y + 5*t^8.918*y t^2.211/g2^4 + (5*t^2.294)/(g1^2*g2^2) + g1^4*t^3.624 + t^4.423/g2^8 + (5*t^4.505)/(g1^2*g2^6) + (15*t^4.588)/(g1^4*g2^4) + (3*g1^3*t^4.771)/g2 + 4*g1*g2*t^4.853 + (3*g2^3*t^4.936)/g1 + (g1^4*t^5.835)/g2^4 + (g1^2*t^5.918)/g2^2 - 8*t^6. - (4*g2^2*t^6.082)/g1^2 + t^6.634/g2^12 + (5*t^6.716)/(g1^2*g2^10) + (15*t^6.799)/(g1^4*g2^8) + (35*t^6.881)/(g1^6*g2^6) + (3*g1^3*t^6.982)/g2^5 + (15*g1*t^7.064)/g2^3 + (16*t^7.147)/(g1*g2) + (11*g2*t^7.229)/g1^3 + g1^8*t^7.248 - g1^4*g2^4*t^7.412 + (g1^4*t^8.047)/g2^8 + (g1^2*t^8.129)/g2^6 - (10*t^8.211)/g2^4 - (40*t^8.294)/(g1^2*g2^2) - (17*t^8.376)/g1^4 + (3*g1^7*t^8.395)/g2 - 3*g1^5*g2*t^8.477 - 8*g1^3*g2^3*t^8.559 - 7*g1*g2^5*t^8.642 + t^8.845/g2^16 + (5*t^8.928)/(g1^2*g2^14) - t^4.147/(g1*g2*y) - t^6.358/(g1*g2^5*y) - (5*t^6.441)/(g1^3*g2^3*y) + (5*t^7.505)/(g1^2*g2^6*y) + (10*t^7.588)/(g1^4*g2^4*y) + (5*g1*g2*t^7.853)/y + (g2^3*t^7.936)/(g1*y) - t^8.57/(g1*g2^9*y) - (5*t^8.652)/(g1^3*g2^7*y) - (15*t^8.734)/(g1^5*g2^5*y) + (g1^4*t^8.835)/(g2^4*y) + (5*g1^2*t^8.918)/(g2^2*y) - (t^4.147*y)/(g1*g2) - (t^6.358*y)/(g1*g2^5) - (5*t^6.441*y)/(g1^3*g2^3) + (5*t^7.505*y)/(g1^2*g2^6) + (10*t^7.588*y)/(g1^4*g2^4) + 5*g1*g2*t^7.853*y + (g2^3*t^7.936*y)/g1 - (t^8.57*y)/(g1*g2^9) - (5*t^8.652*y)/(g1^3*g2^7) - (15*t^8.734*y)/(g1^5*g2^5) + (g1^4*t^8.835*y)/g2^4 + (5*g1^2*t^8.918*y)/g2^2


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
795 SU2adj1nf2 ${}M_{1}q_{1}q_{2}$ + ${ }\phi_{1}^{2}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{2}q_{1}\tilde{q}_{1}$ + ${ }M_{2}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{3}q_{2}\tilde{q}_{1}$ + ${ }M_{4}q_{1}\tilde{q}_{2}$ + ${ }M_{5}q_{2}\tilde{q}_{2}$ + ${ }M_{6}\tilde{q}_{1}\tilde{q}_{2}$ 0.8092 1.0197 0.7935 [M:[0.7518, 0.7518, 0.7518, 0.7518, 0.7518, 0.7518], q:[0.6241, 0.6241], qb:[0.6241, 0.6241], phi:[0.3759]] 7*t^2.255 + 28*t^4.511 + 10*t^4.872 - 16*t^6. - t^4.128/y - t^4.128*y detail