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
79592 Sp2s2nf1 ${}M_{1}q_{1}q_{2}$ + ${ }M_{1}S_{1}^{2}$ + ${ }q_{1}q_{2}S_{1}$ + ${ }M_{1}X_{1}$ + ${ }q_{2}^{2}S_{2}$ 2.2608 2.358 0.9588 [X:[1.3333], M:[0.6667], q:[0.5556, 0.7778], qb:[], phi:[], S:[0.6667, 0.4444], Sb:[], A:[], Ab:[]] [X:[[0]], M:[[0]], q:[[0], [0]], qb:[], phi:[], S:[[0], [0]], Sb:[], A:[], Ab:[]] 0 {a: 1465/648, c: 191/81, X1: 4/3, M1: 2/3, q1: 5/9, q2: 7/9, S1: 2/3, S2: 4/9}
Relevant OperatorsMarginal Operators$n_{marginal}$$-$$|F_{IR}|$Superconformal IndexRefined index
${}S_{2}^{2}$, ${ }S_{1}S_{2}$, ${ }S_{1}^{2}$, ${ }X_{1}$, ${ }q_{1}^{2}S_{2}$, ${ }q_{1}^{2}S_{1}$, ${ }q_{1}q_{2}S_{2}$, ${ }S_{2}^{4}$ ${2}S_{1}S_{2}^{3}$ 1 t^2.667 + t^3.333 + 2*t^4. + t^4.667 + 2*t^5.333 + t^6. + 5*t^6.667 + 4*t^7.333 + 6*t^8. + 3*t^8.667 - t^4.333/y - t^5./y - t^7./y - (2*t^7.667)/y - (4*t^8.333)/y - t^4.333*y - t^5.*y - t^7.*y - 2*t^7.667*y - 4*t^8.333*y t^2.667 + t^3.333 + 2*t^4. + t^4.667 + 2*t^5.333 + t^6. + 5*t^6.667 + 4*t^7.333 + 6*t^8. + 3*t^8.667 - t^4.333/y - t^5./y - t^7./y - (2*t^7.667)/y - (4*t^8.333)/y - t^4.333*y - t^5.*y - t^7.*y - 2*t^7.667*y - 4*t^8.333*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
79665 ${}M_{1}q_{1}q_{2}$ + ${ }M_{1}S_{1}^{2}$ + ${ }q_{1}q_{2}S_{1}$ + ${ }M_{1}X_{1}$ + ${ }q_{2}^{2}S_{2}$ + ${ }M_{2}S_{1}S_{2}$ 2.2708 2.375 0.9561 [X:[1.3333], M:[0.6667, 0.8889], q:[0.5556, 0.7778], qb:[], phi:[], S:[0.6667, 0.4444], Sb:[], A:[], Ab:[]] 2*t^2.667 + 2*t^4. + t^4.667 + 4*t^5.333 - t^4.333/y - t^5./y - t^4.333*y - t^5.*y detail {a: 109/48, c: 19/8, X1: 4/3, M1: 2/3, M2: 8/9, q1: 5/9, q2: 7/9, S1: 2/3, S2: 4/9}


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
79528 Sp2s2nf1 ${}M_{1}q_{1}q_{2}$ + ${ }M_{1}S_{1}^{2}$ + ${ }q_{1}q_{2}S_{1}$ + ${ }M_{1}X_{1}$ 2.2886 2.3858 0.9592 [X:[1.3333], M:[0.6667], q:[0.6667, 0.6667], qb:[], phi:[], S:[0.6667, 0.4444], Sb:[], A:[], Ab:[]] t^2.667 + t^3.333 + 2*t^4. + 4*t^5.333 - t^4.333/y - t^5./y - t^4.333*y - t^5.*y detail {a: 1483/648, c: 773/324, X1: 4/3, M1: 2/3, q1: 2/3, q2: 2/3, S1: 2/3, S2: 4/9}