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
1669 SU2adj1nf2 ${}\phi_{1}q_{1}^{2}$ + ${ }M_{1}q_{2}\tilde{q}_{1}$ + ${ }M_{2}q_{2}\tilde{q}_{2}$ + ${ }M_{3}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{2}\phi_{1}^{2}$ + ${ }M_{4}\phi_{1}q_{2}\tilde{q}_{2}$ + ${ }M_{5}q_{1}\tilde{q}_{2}$ + ${ }M_{6}q_{1}q_{2}$ + ${ }M_{2}M_{5}$ + ${ }M_{7}\phi_{1}^{2}$ 0.6767 0.8464 0.7996 [M:[0.857, 1.143, 0.9996, 0.7144, 0.857, 0.7144, 1.143], q:[0.7857, 0.4998], qb:[0.6431, 0.3572], phi:[0.4285]] [M:[[-4], [4], [-14], [6], [-4], [6], [4]], q:[[1], [-7]], qb:[[11], [3]], phi:[[-2]]] 1
Relevant OperatorsMarginal Operators$n_{marginal}$$-$$|F_{IR}|$Superconformal IndexRefined index
${}M_{4}$, ${ }M_{6}$, ${ }M_{1}$, ${ }M_{5}$, ${ }M_{3}$, ${ }M_{2}$, ${ }M_{7}$, ${ }\phi_{1}\tilde{q}_{2}^{2}$, ${ }\phi_{1}q_{2}^{2}$, ${ }M_{4}^{2}$, ${ }M_{4}M_{6}$, ${ }M_{6}^{2}$, ${ }q_{1}\tilde{q}_{1}$, ${ }\phi_{1}\tilde{q}_{1}\tilde{q}_{2}$, ${ }M_{1}M_{4}$, ${ }M_{4}M_{5}$, ${ }M_{1}M_{6}$, ${ }M_{5}M_{6}$, ${ }\phi_{1}q_{2}\tilde{q}_{1}$, ${ }M_{1}^{2}$, ${ }M_{3}M_{4}$, ${ }M_{1}M_{5}$, ${ }M_{5}^{2}$, ${ }M_{3}M_{6}$, ${ }\phi_{1}\tilde{q}_{1}^{2}$, ${ }M_{1}M_{3}$, ${ }M_{3}M_{5}$, ${ }M_{2}M_{4}$, ${ }M_{2}M_{6}$, ${ }M_{4}M_{7}$, ${ }M_{6}M_{7}$, ${ }M_{4}\phi_{1}\tilde{q}_{2}^{2}$, ${ }M_{6}\phi_{1}\tilde{q}_{2}^{2}$, ${ }M_{3}^{2}$ ${}M_{1}M_{2}$, ${ }M_{1}M_{7}$, ${ }M_{5}M_{7}$, ${ }M_{1}\phi_{1}\tilde{q}_{2}^{2}$, ${ }M_{5}\phi_{1}\tilde{q}_{2}^{2}$ 2 2*t^2.143 + 2*t^2.571 + t^2.999 + 3*t^3.429 + t^4.284 + 5*t^4.287 + 5*t^4.714 + 4*t^5.142 + t^5.144 + t^5.57 + 5*t^5.572 + t^5.998 + 2*t^6. + t^6.428 + 7*t^6.43 + t^6.856 + 11*t^6.858 + t^7.283 + 5*t^7.286 + 2*t^7.288 + 4*t^7.713 + 11*t^7.716 + 3*t^8.141 + 2*t^8.569 - 2*t^8.571 + 12*t^8.573 + t^8.997 - 2*t^8.999 - t^4.286/y - (2*t^6.429)/y - t^6.857/y - t^7.284/y + (2*t^7.287)/y + (5*t^7.714)/y + (5*t^8.142)/y + (2*t^8.57)/y + (3*t^8.572)/y - t^4.286*y - 2*t^6.429*y - t^6.857*y - t^7.284*y + 2*t^7.287*y + 5*t^7.714*y + 5*t^8.142*y + 2*t^8.57*y + 3*t^8.572*y 2*g1^6*t^2.143 + (2*t^2.571)/g1^4 + t^2.999/g1^14 + 3*g1^4*t^3.429 + t^4.284/g1^16 + 5*g1^12*t^4.287 + 5*g1^2*t^4.714 + (4*t^5.142)/g1^8 + g1^20*t^5.144 + t^5.57/g1^18 + 5*g1^10*t^5.572 + t^5.998/g1^28 + 2*t^6. + t^6.428/g1^10 + 7*g1^18*t^6.43 + t^6.856/g1^20 + 11*g1^8*t^6.858 + t^7.283/g1^30 + (5*t^7.286)/g1^2 + 2*g1^26*t^7.288 + (4*t^7.713)/g1^12 + 11*g1^16*t^7.716 + (3*t^8.141)/g1^22 + (2*t^8.569)/g1^32 - (2*t^8.571)/g1^4 + 12*g1^24*t^8.573 + t^8.997/g1^42 - (2*t^8.999)/g1^14 - t^4.286/(g1^2*y) - (2*g1^4*t^6.429)/y - t^6.857/(g1^6*y) - t^7.284/(g1^16*y) + (2*g1^12*t^7.287)/y + (5*g1^2*t^7.714)/y + (5*t^8.142)/(g1^8*y) + (2*t^8.57)/(g1^18*y) + (3*g1^10*t^8.572)/y - (t^4.286*y)/g1^2 - 2*g1^4*t^6.429*y - (t^6.857*y)/g1^6 - (t^7.284*y)/g1^16 + 2*g1^12*t^7.287*y + 5*g1^2*t^7.714*y + (5*t^8.142*y)/g1^8 + (2*t^8.57*y)/g1^18 + 3*g1^10*t^8.572*y


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
1073 SU2adj1nf2 ${}\phi_{1}q_{1}^{2}$ + ${ }M_{1}q_{2}\tilde{q}_{1}$ + ${ }M_{2}q_{2}\tilde{q}_{2}$ + ${ }M_{3}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{2}\phi_{1}^{2}$ + ${ }M_{4}\phi_{1}q_{2}\tilde{q}_{2}$ + ${ }M_{5}q_{1}\tilde{q}_{2}$ + ${ }M_{6}q_{1}q_{2}$ + ${ }M_{2}M_{5}$ 0.6895 0.8678 0.7945 [M:[0.8529, 1.1471, 0.9853, 0.7206, 0.8529, 0.7206], q:[0.7868, 0.4927], qb:[0.6544, 0.3603], phi:[0.4265]] 2*t^2.162 + 3*t^2.559 + t^2.956 + 2*t^3.441 + t^4.235 + 5*t^4.323 + 7*t^4.721 + 7*t^5.118 + t^5.206 + 2*t^5.515 + 3*t^5.603 + t^5.912 + 2*t^6. - t^4.279/y - t^4.279*y detail